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CN110503521B - Rental information processing method, device, server and system of intelligent sales terminal - Google Patents

Rental information processing method, device, server and system of intelligent sales terminal
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Publication number
CN110503521B
CN110503521BCN201910779487.0ACN201910779487ACN110503521BCN 110503521 BCN110503521 BCN 110503521BCN 201910779487 ACN201910779487 ACN 201910779487ACN 110503521 BCN110503521 BCN 110503521B
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information
lease
intelligent
commodity
sales terminal
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CN110503521A (en
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李文华
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Shenzhen Genuine Innovative Technology Co ltd
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Shenzhen Genuine Innovative Technology Co ltd
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Abstract

The invention relates to the technical field of Internet, and discloses a lease information processing method, a server and an information processing system of an intelligent sales terminal, wherein the lease information processing method comprises the following steps: obtaining pricing associated information of the intelligent sales terminal and/or the commodity storage position, processing the pricing associated information by using a preset pricing algorithm to obtain quotation information, wherein the quotation information comprises the quotation information of the intelligent sales terminal and/or the commodity storage position, and processing the quotation information by using a preset intelligent algorithm to obtain lease information. The lease information processing method provided by the invention not only improves the utilization rate of the intelligent sales terminal and/or the commodity storage position, but also realizes intelligent management of lease information, logistics information, purchase, sale, inventory information, point reward information and commodity promotion information.

Description

Rental information processing method, device, server and system of intelligent sales terminal
Technical Field
The invention relates to the technical field of internet, in particular to a lease information processing method, a lease information processing device, a lease information processing server and a lease information processing system of an intelligent sales terminal.
Background
Along with the development of the internet technology, the intelligent selling phenomenon is more and more common, people can arrange intelligent selling terminals in various commercial places or living places, and various commodity services are provided through the intelligent selling terminals, so that the lives of people are greatly enriched.
Generally, the layout position and the price of the intelligent sales terminal are determined by an operator, however, the layout position and the price determined by the operator are often not matched, for example, the flow of people around the layout position of the intelligent sales terminal is relatively small, but the price is relatively high, and since the franchisee also lacks relevant data to make a more accurate franchise decision when renting the intelligent sales terminal, the franchisee is often limited to reduce the number of options or not renting the intelligent sales terminal due to fear of loss, and the utilization rate of the intelligent sales terminal is greatly reduced.
Disclosure of Invention
An object of an embodiment of the present invention is to provide a method, an apparatus, a server and a system for processing lease information of an intelligent sales terminal, which can provide more accurate lease information for leases of the intelligent sales terminal.
In order to solve the above technical problems, embodiments of the present invention provide the following technical solutions:
in a first aspect, an embodiment of the present invention provides a lease information processing method for an intelligent sales terminal, which is applied to a server, and the method includes:
acquiring pricing associated information of the intelligent sales terminal and/or the commodity storage position;
processing the pricing associated information by using a preset pricing algorithm to obtain quotation information, wherein the quotation information comprises quotation information of the intelligent sales terminal and/or the commodity storage position;
and processing the quotation information by using a preset intelligent algorithm to obtain the lease information of the intelligent sales terminal and/or the commodity storage position.
Optionally, the pricing associated information includes consumption group information of a location where the sales terminal is located, and the pricing associated information is processed by using a preset pricing algorithm to obtain the offer information, including:
and processing the consumer group information by using a preset pricing algorithm to obtain the quotation information of the intelligent sales terminal and/or the commodity storage position.
Optionally, the pricing associated information further includes commodity sales information in an area where the sales terminal is located, and the preset pricing algorithm is used to process the consumer group information to obtain offer information of the intelligent sales terminal and/or the commodity storage location, including:
and processing the consumer group information and the commodity sales information together by using a preset pricing algorithm to obtain the quotation information of the intelligent sales terminal and/or the commodity storage position.
Optionally, the method further comprises:
obtaining a lease request, wherein the lease request comprises lease party bidding information;
and processing the leaseholder bidding information by using a preset bidding algorithm according to the lease request, and determining the leaseholder information of the intelligent sales terminal and/or the commodity storage position.
Optionally, the lease request further includes lease combination information, and the processing of the lease party bidding information using a preset bidding algorithm includes:
determining all intelligent sales terminals and/or commodity storage positions pointed by the leasing combination information;
determining lease price information of all intelligent sales terminals and/or commodity storage positions;
and carrying out bidding treatment on the lease price information and the lease party bidding information.
Optionally, determining lease price information of all intelligent sales terminals and/or commodity storage positions includes:
and calculating lease price information of all the intelligent sales terminals and/or the commodity storage positions by using an intelligent price algorithm according to the geographical position information of all the intelligent sales terminals and/or the commodity storage positions.
Optionally, the lease request includes a plurality of lease party bid information, and the processing of the lease party bid information using a preset bid algorithm includes:
determining the starting price and the highest price of the intelligent sales terminal and/or the commodity storage position;
recording a lease request of lease party bidding information meeting auction rules as an auction success state, wherein the auction price of the lease party bidding information is higher than the start price and lower than the maximum price, and is also higher than the auction prices of the rest lease party bidding information;
and recording a lease request of the lease party bidding information which does not meet the auction rule as an auction outgoing state, wherein the auction price of the lease party bidding information is lower than the auction price.
Optionally, the method further comprises:
and selecting the optimal geographical position as a storage position in a preset map according to an intelligent address selection algorithm.
Optionally, selecting an optimal geographic location as a warehousing location in a preset map according to an intelligent location algorithm, including:
determining basic merchant data in a preset area range;
acquiring ground pushing merchant data in the preset area range;
screening out all intention merchants according to the basic merchant data and the ground push merchant data;
and selecting the optimal geographical position from a preset map as the warehousing position according to the geographical positions of all the intention commercial tenants.
Optionally, the warehousing location comprises a restocking location, the method further comprising:
acquiring replenishment information;
and processing the replenishment information by using an intelligent replenishment algorithm to obtain a replenishment position.
Optionally, processing the replenishment information by using an intelligent replenishment algorithm to obtain a replenishment position, including:
extracting the geographic position of the intelligent sales terminal from the replenishment information;
and obtaining a replenishment position according to the geographic position and the optimal path algorithm.
Optionally, the merchandise storage locations include warehouses and/or aisles.
Optionally, the method further comprises:
acquiring order information, wherein the order information carries information of purchased commodities;
determining a promotional item associated with the purchased item according to the order information;
judging whether the intelligent sales terminal and/or the commodity storage position are/is used for placing the promotion commodity;
and if so, presenting the commodity information of the promotion commodity.
Optionally, the method further comprises:
acquiring commodity sales information positioned at the intelligent sales terminal and/or the commodity storage position, wherein the commodity sales information comprises commodity sales volume of sold commodities;
judging whether the sales volume of the commodity meets preset sales promotion conditions or not;
and if so, determining a target user associated with the sold commodity, and sending commodity promotion information to the target user.
Optionally, the method further comprises:
acquiring online ordering information;
determining a goods taking terminal according to the on-line ordering information;
and sending a goods picking code to the goods taking terminal so as to enable the intelligent sales terminal to carry out goods delivery processing.
In a second aspect, an embodiment of the present invention provides a lease information processing apparatus for an intelligent sales terminal, which is applied to a server, and the apparatus includes:
the pricing information acquisition module is used for acquiring pricing associated information of the intelligent sales terminal and/or the commodity storage positions, wherein the intelligent sales terminal comprises at least one commodity storage position;
the quotation processing module is used for processing the pricing associated information by using a preset pricing algorithm to obtain quotation information, wherein the quotation information comprises quotation information of the intelligent sales terminal and/or the commodity storage position;
and the lease information generation module is used for processing the quotation information by using a preset intelligent algorithm to obtain lease information of the intelligent sales terminal and/or the commodity storage position.
In a third aspect, an embodiment of the present invention provides a server, including:
at least one processor; and
a memory communicatively coupled to the at least one processor; wherein the memory stores instructions executable by the at least one processor, the instructions being executable by the at least one processor to enable the at least one processor to perform any one of the rental information processing methods of the intelligent sales terminal.
In a fourth aspect, an embodiment of the present invention provides an information processing system, including an intelligent sales terminal and the server, where the intelligent sales terminal communicates with the server.
In the above embodiments, first, pricing related information of the intelligent sales terminal and/or the commodity storage location is obtained. And secondly, processing pricing associated information by using a preset pricing algorithm to obtain quotation information, wherein the quotation information comprises quotation information of the intelligent sales terminal and/or the commodity storage position. And finally, processing the quotation information by using a preset intelligent algorithm to obtain the lease information of the intelligent sales terminal and/or the commodity storage position. Due to the pricing associated information, more accurate quotation information can be obtained, so that more comprehensive and accurate leasing information is provided for the user, and the user can make a corresponding leasing decision according to the leasing information.
Drawings
One or more embodiments are illustrated by way of example in the accompanying drawings, which correspond to the figures in which like reference numerals refer to similar elements and which are not to scale unless otherwise specified.
FIG. 1a is a block diagram of an information handling system according to an embodiment of the present invention;
FIG. 1b is a schematic structural diagram of an intelligent sales terminal according to an embodiment of the present invention;
FIG. 1c is a schematic structural diagram of the intelligent sales terminal provided in FIG. 1b after a cabinet is hidden;
FIG. 1d is a schematic structural diagram of an unfolding cabinet door of an intelligent sales terminal according to an embodiment of the present invention;
FIG. 1e is a schematic view of the structure of the packaging lane of FIG. 1 d;
FIG. 1f is a schematic view of the structure of the loading chute of FIG. 1 d;
FIG. 1g is a partial schematic view of a spring cargo way adopted by an intelligent sales terminal according to an embodiment of the present invention;
FIG. 1h is a schematic cross-sectional view of the spring cargo way of FIG. 1 g;
FIG. 2 is a schematic view of a cargo way for holding goods, wherein the cargo way is adjustable;
fig. 3a is a schematic flowchart of a rental information processing method of an intelligent sales terminal according to an embodiment of the present invention;
FIG. 3b is a schematic diagram of the intelligent sales terminal layout in each area according to the embodiment of the present invention;
FIG. 3c is a schematic diagram of an intelligent sales terminal layout on a road according to an embodiment of the present invention;
FIG. 4a is a schematic diagram of a warehouse location being built to provide goods for various merchants according to an embodiment of the present invention;
FIGS. 4b and 4c are schematic diagrams of a process for constructing a warehouse location according to an embodiment of the present invention;
FIG. 5 is a schematic illustration of a replenishment process provided by an embodiment of the present invention;
fig. 6 is a schematic diagram of a process for a takeout person to pick up goods by a goods picking code according to an embodiment of the present invention;
FIG. 7 is a schematic diagram of a process for a user to pick up goods by picking up a goods code according to an embodiment of the present invention;
FIG. 8a is a schematic structural diagram of a rental information processing apparatus of an intelligent sales terminal according to an embodiment of the present invention;
FIG. 8b is a schematic structural diagram of a rental information processing apparatus of an intelligent sales terminal according to another embodiment of the present invention;
fig. 9 is a schematic structural diagram of a server according to an embodiment of the present invention.
Detailed Description
In order to make the objects, technical solutions and advantages of the present invention more apparent, the present invention is described in further detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are merely illustrative of the invention and are not intended to limit the invention.
The rental information processing method of the intelligent sales terminal provided by the embodiment of the invention can be executed in any suitable type of electronic equipment with computing capability, such as a server, a desktop computer, a smart phone, a tablet computer and other electronic products. The server may be a physical server or a logical server formed by virtualizing a plurality of physical servers. The server may also be a server cluster formed by a plurality of servers capable of communicating with each other, and each functional module may be respectively distributed on each server in the server cluster.
The lease information processing device of the intelligent sales terminal in the embodiment of the invention can be used as a software system and independently arranged in the electronic equipment, and also can be used as one of the functional modules integrated in the processor to execute the lease information processing method of the intelligent sales terminal in the embodiment of the invention.
Referring to fig. 1a, fig. 1a is a schematic structural diagram of an information processing system according to an embodiment of the present invention. As shown in fig. 1a, theinformation processing system 100 includes anintelligent sales terminal 11 and aserver 12, and theserver 12 communicates with theintelligent sales terminal 11.
The intelligent sales terminal 11 may be configured as an intelligent sales counter, an intelligent store, an intelligent warehouse store, a mobile store, and the like.
Referring to fig. 1b and fig. 1c, theintelligent sales terminal 11 is configured as an intelligent sales counter, and theintelligent sales terminal 11 includes acabinet 111, adisplay 112, ashelf 113 and alane 114.
Thecabinet 111 is used for bearing various commodities, thedisplay screen 112 is used for displaying commodity information and advertisement information, thedisplay screen 112 is also used as an interactive interface between a user and theintelligent sales terminal 11, and the user can input various instructions on thedisplay screen 112 to implement commodity transaction. In some embodiments, thedisplay screen 112 is a 43 "infrared touch screen.
One side of theshelf 113 is movably connected with the inner surface of one side of thecabinet 111, and thegoods channel 114 is arranged on theshelf 114. In some embodiments, the number ofshelves 113 is four, it being understood that in other embodiments, the number ofshelves 113 is not limited to four.
Thelane 114 may be designed to hold small items such as beverages, cigarettes, and the like. The goods are placed on thegoods channel 114, a shared goods channel for conveying the goods on thegoods shelf 113 in thegoods channel 114 is arranged in thecabinet body 111, the goods are transmitted to the goods outlet through the shared goods channel, and then the user takes out the goods through the goods outlet to finish the shopping process.
In this embodiment, intelligent sales terminal can seek the commodity memory position according to commodity information and realize selling the different commodity of same goods way, satisfies the user to the demand of different kind commodity.
The commodity information can be commodity types, commodity quantity or commodity storage information and the like, a user can select commodities required by the user according to the commodity information displayed on the display screen of the intelligent sales terminal, the user can select not only the same commodities in the same commodity channel but also different commodities on the same commodity channel, the user can select different commodities according to the commodity types displayed on the display screen, the user can also select the commodities required to be purchased according to the commodity quantity displayed on the display screen, and the users can also select the commodities required to be purchased according to the commodity storage information displayed on the display screen.
In some embodiments, thelane 114 may be configured to fit any commodity shape, such as a specialized cigarette vending machine, and the smart point-of-sale terminal 11 may vend not only a single cigarette in a pack, but also a whole cigarette in a strip. Referring to fig. 1d, thegoods passage 114 includes apacking goods passage 1141 and astrip goods passage 1142, thepacking goods passage 1141 is used for placing packed cigarettes, thestrip goods passage 1142 is used for placing strip packed cigarettes, and the intelligent sales terminal 11 shown in fig. 1d includes a two-layerpacking goods passage 1141 and a two-layerstrip goods passage 1142.
Referring to fig. 1e, thepackage lane 1141 includes amulti-layer package slot 1101 and afirst driving assembly 1102, wherein thepackage slot 1101 is used for placing a package of cigarettes, and thefirst driving assembly 1102 is used for pushing the cigarettes at the lowermost layer to fall into the fetching opening. When a user places an order to purchase cigarettes, and after successful payment, the corresponding first drivingassembly 1102 pushes the cigarettes located at the bottommost layer to be separated from thepackage storage 1101 and fall into the pick-up opening.
Referring to fig. 1f, therod loading chute 1142 includes a multi-layerrod loading location 1103 and asecond driving assembly 1104, therod loading location 1103 is used for placing a rod of cigarettes, and thesecond driving assembly 1104 is used for pushing the rod of cigarettes located at the bottom layer to fall into the fetching opening. When a user places an order to purchase a cigarette, and a successful payment is made, the correspondingsecond driving assembly 1104 pushes the cigarette positioned at the bottommost layer to be separated from thebar loading position 1103 and fall into the fetching port.
In some embodiments, the cigarettes may be packaged not only in a strip, but also in other shapes, such as a cylinder, etc., and accordingly, the goods channel of the intelligent sales terminal may also be configured to store cigarettes in other shapes, which will not be described herein.
In some embodiments, the shape of the intelligent sales terminal is not limited to the shape described in the above embodiments, but other variations are possible, and it is worth mentioning that: any modification or replacement of the intelligent sales terminal can be made by those skilled in the art according to the teaching of the embodiment, but the modification or replacement should fall within the protection scope of the present invention.
The difference from the cargo way shown in the above embodiments is that, referring to fig. 1g and fig. 1h, eachcargo way 114 is connected with aspring 1105, and the goods are placed on thespring 1105. After the user successfully pays for the commodity, thecorresponding spring 1105 on the goods channel ejects the commodity out of the article taking opening, so that the user can take out the purchased commodity from the article taking opening.
In some embodiments, the number of the lanes of theintelligent sales terminal 11 is multiple, and the placement space of any one of every two adjacent lanes can be adjusted.
In this embodiment, when theserver 12 detects the reservation information, it determines whether the lane pointed by the reservation information is reserved, and if so, generates a rental instruction; and if not, generating lease failure information, wherein the reservation information carries a goods channel mark of a goods channel needing to be leased by the user and commodity information of the sold commodities placed on the goods channel.
Theserver 12 issues a lease instruction to the intelligent sales terminal and sends the lease instruction to theintelligent sales terminal 11, and theintelligent sales terminal 11 allows the corresponding user to operate the corresponding lane according to the lease instruction and can also adjust the placement space of the corresponding lane.
For example, referring to fig. 2, the lane 21 is located between the lanes 22 and 23, wherein the lanes 22 and 23 are rented and placed with goods by other users, and the lane 21 is not rented yet.
After the goods channel 21 is reserved, theserver 12 controls the intelligent sales terminal to adjust the placing space of the goods channel 21 according to the goods information of the sold goods.
In some embodiments, the commodity information includes the commodity size of the commodity to be sold, and therefore, the server can control the intelligent sales terminal to adjust the placement space of the commodity channel 21 to be adapted to the commodity size. For example, the selling goods are a packet of cigarettes, the server can control the intelligent selling terminal to adjust the width of the goods channel 21 to be matched with the width of the cigarettes, and the length of the goods channel 21 is matched with the length of the cigarettes. For another example, the selling goods are mineral water, the server can control the intelligent selling terminal to adjust the width of the goods channel 21 to be matched with the width of the mineral water, and the height of the goods channel 21 is matched with the length of the mineral water.
In some embodiments, since the number of lanes of the intelligent sales terminal is multiple, and different users rent different lanes to place the sold goods, whether lanes rented by the different users are adjustable or not is also negotiated with the platform, the negotiation results include that lanes are allowed to be adjusted and lanes are prohibited from being adjusted, for example, lane 21 is rented by user S1, lane 22 is rented by user S2, lane 23 is rented by user S3, assuming that user S2 negotiates with the platform: the cargo way 22 can be adjusted. User S3 negotiates with the platform: the cargo way 23 cannot be adjusted.
Therefore, in the process of controlling the intelligent sales terminal to adjust the placing space of the goods channel 21, the server judges whether the placing space of any one or more than two goods channels adjacent to the goods channel 21 is adjustable, and if so, controls the intelligent sales terminal to adjust the placing space of the goods channel 21 to be suitable for the size of the goods.
In some embodiments, the placement space of one or more lanes adjacent to lane 21 may be adjustable, so that, when adjusting, the server may first calculate the size difference between the placement space and the size of the goods.
Next, an adjustable lane is determined adjacent to lane 21 and providing a size difference, for example, the adjustable lane includes a first adjustable lane and a second adjustable lane, the first adjustable lane is determined adjacent to lane 21 and provides a first size difference, the second adjustable lane is determined adjacent to the target lane and provides a second size difference, wherein the first size difference and the second size difference are added to obtain the size difference.
Finally, theserver 12 controls the intelligent sales terminal to adjust the adjustable commodity channels to reduce the placing space according to the size difference so that the placing space of the expanded commodity channels 21 is matched with the commodity size, for example, the server controls the intelligent sales terminal to adjust the first adjustable commodity channels to reduce the placing space according to the first size difference, and controls the intelligent sales terminal to adjust the second adjustable commodity channels to reduce the placing space according to the second size difference so that the placing space of the expanded commodity channels 21 is matched with the commodity size.
Theserver 12 may be a physical server or a logical server virtualized from a plurality of physical servers. The server may also be a server cluster formed by a plurality of servers capable of communicating with each other, and each functional module may be respectively distributed on each server in the server cluster.
As another aspect of the embodiment of the present invention, an embodiment of the present invention provides a lease information processing method for an intelligent sales terminal, which is applied to a server. Referring to fig. 3a, the rentalinformation processing method 300 includes:
s31, acquiring pricing associated information of the intelligent sales terminal and/or the commodity storage position;
in this embodiment, the commodity storage position may be a goods channel, an arbitrary commodity placement position, and the like in the intelligent sales terminal, and it can be understood that the commodity storage position may also be a warehouse, where the warehouse may store commodity goods.
In this embodiment, the intelligent sales terminal can rent the entire rental item to the user, and it can be understood that each lane of the intelligent sales terminal can also rent the entire rental item to the user as a local rental item.
In this embodiment, the pricing related information is information related to pricing of the smart sales terminal or the commodity storage location.
In some embodiments, the pricing associated information includes consumer group information of an area where the intelligent sales terminal is located and/or commodity sales information of the area where the intelligent sales terminal is located. Wherein, the consumer group information is the crowd information in the layout area of the intelligent sales terminal, for example, referring to fig. 3b, the intelligent sales terminal M1 is laid out in the area P1, the intelligent sales terminal M2 is laid out in the area P2, and the intelligent sales terminal M3 is laid out in the area P3, wherein, in each area, corresponding consumer groups exist, for example, the consumer groups include people such as office workers, local residents, and so on. For the region P1, it corresponds to the consumer group information N1, where the consumer group information N1 includes daily average crowd flow, gender number, age group number, and so on, for example, in the consumer group information N1, the daily average crowd flow is 5000 people/day; the sex population is: male 2000, female 3000; the number of people in the age group is: the number of people between 0 and 18 years of age is 500, between 19 and 40 years of age is 4000, and more than 40 years of age is 500.
The commodity sales information is sales information in which all commodities in a layout area of the smart sales terminal are sold, each area has a corresponding consumer group, for example, in an area P1, the commodity sales information T1 includes various commodities sold in an area P1, a sales price of each commodity or daily sales volume of each commodity, and the like, for example, various commodities sold in an area P1 includes mineral water, beverages, bread, masks, snacks, or family planning supplies, and the like, wherein the sales price of mineral water in the area P1 is 3 yuan, the sales price of beverages is 6 yuan, the sales price of bread is 8 yuan, and the like. The daily average sales of mineral water in the region P1 was 500 bottles, the daily average sales of beverages was 600 bottles, and the daily average sales of bread was 100 bottles.
In some embodiments, the pricing-related information may further include mobile-end communication data, where the mobile-end communication data includes communication data provided by a communication base station in a specific location to a user in a communication range covered by the mobile-end communication data and identity data associated with the communication data, and the communication data includes call data and various types of network broadband traffic data, where the call data includes mobile call data and fixed call data, for example, the mobile call data is call data for a user to make a call to another user using a mobile terminal, and the fixed call data is call data for a user to make a call to another user using a fixed telephone. The network broadband flow data is broadband flow needed by various application programs installed in the user electronic equipment to complete certain services.
Generally, the call data or various network broadband traffic data not only carry various information generated by the application program, but also often carry native information of the communication user, and the like.
Typically, a user registers relevant information with an operator managing a base station, and then the user can make a call and use network broadband traffic, for example, the user establishes personal user data with a certain telecommunications operator and fills out identity card information with the telecommunications operator, the telecommunications operator enters the identity card information of the user into a system, and assigns a telephone number to the user, and so on. Thus, the user can use the communication device to complete the call and use the network broadband traffic.
Therefore, in the present embodiment, the identity data may be encapsulated in the mobile communication data, and the identity data may include identity card information, account information, phone number information, and the like.
And the server screens out target crowd information meeting preset conditions according to the mobile terminal communication data, and takes the target crowd information as pricing associated information. For example, mobile terminal communication data from nine am to six pm of the user a is often collected, and mobile terminal communication data from six pm is often not collected, so that, through analysis: the user A is a working group in the preset area, does not live in the preset area, and belongs to the target crowd information. For another example, mobile communication data of user B at any time period throughout the day is often collected, and then, through analysis: and the user B lives in the preset area, and the user B is on duty in the preset area with high probability, and belongs to the expected consumer group. As another example, occasionally, the mobile terminal communication data of the user C in the preset area is collected, and then, through analysis: and the user C does not live in the preset area, and does not work in the preset area with high probability, so that the user C does not belong to the target crowd information.
In some embodiments, the server may further extract relevant user information according to the mobile terminal communication data, and use the user information as pricing associated information, for example, extract native information of the user, category of using a specific application, duration and time point of using the specific application, traffic size of using the specific application, and the like.
S32, processing the pricing associated information by using a preset pricing algorithm to obtain quoted price information;
in the present embodiment, the preset pricing algorithm may adopt a cost-oriented pricing method, a target profit pricing method, a marginal cost pricing method, or the like.
In this embodiment, the quotation information is quotation that the intelligent sales terminal and/or the commodity storage location are deployed in a certain area, wherein the quotation information here may include quotation information of the intelligent sales terminal and/or the commodity storage location.
In some embodiments, the server may process the consumer group information using a preset pricing algorithm to obtain the offer information of the intelligent sales terminal and/or the commodity storage location.
In some embodiments, the server may process the commodity sales information using a preset pricing algorithm to obtain the price quote information of the intelligent sales terminal and/or the commodity storage location.
In some embodiments, the server may further process the consumer group information and the commodity sales information together by using a preset pricing algorithm, so as to obtain the offer information of the intelligent sales terminal and/or the commodity storage location.
And S33, associating the intelligent sales terminal and/or the commodity storage position with the corresponding quotation information to obtain the lease information of the intelligent sales terminal and/or the commodity storage position.
In this embodiment, the server associates the intelligent sales terminal located in the specific area with the offer information thereof to obtain the rental information, and/or associates the storage location of the merchandise located in the specific area with the offer information thereof to obtain the rental information.
In this embodiment, the rental information includes position information of the intelligent sales terminal and/or the storage location of the commodity and price quoted information thereof.
When the server obtains the leasing information, the server releases the leasing information to various platforms so as to attract the user to lease the intelligent sales terminal and/or the commodity storage position.
Due to the pricing associated information, more accurate quotation information can be obtained, so that more comprehensive and accurate leasing information is provided for the user, and the user can make a corresponding leasing decision according to the leasing information.
In some embodiments, one or more intelligent sales terminals and/or merchandise storage locations may be leased by bidding, for example, first, a user sends a lease request to the system through a cell phone terminal, wherein the lease request includes lease party bidding information. Secondly, the system processes the leaser bidding information by using a preset bidding algorithm according to the lease request to determine the leaser information of the intelligent sales terminal and/or the commodity storage position, for example, the preset bidding algorithm can adopt a mode of obtaining a higher price person, and the system picks out the user with the highest bid as the leaser capable of leasing the intelligent sales terminal and/or the commodity storage position, namely, the leaser information of the intelligent sales terminal and/or the commodity storage position is determined.
In some embodiments, when a plurality of users issue lease offers to a certain intelligent sales terminal and/or goods storage location, that is, the lease requests include a plurality of leaseholder bidding information, then in the process of processing the leaseholder bidding information by using a preset bidding algorithm, the system first determines the starting price and the highest price of the intelligent sales terminal and/or goods storage location. Secondly, the system records the lease request of the lease party bidding information meeting the auction rule as an auction success state, wherein the auction price of the lease party bidding information is higher than the starting price and lower than the maximum price, and is also higher than the auction prices of the rest lease party bidding information. And recording the lease request of the lease party bidding information which does not meet the auction rule as an auction outgoing state, wherein the auction price of the lease party bidding information is lower than the auction price.
Therefore, the intelligent sales terminal and/or the commodity storage position are leased in a bidding mode, the market demand can be met, and a fair competition environment is provided for the market.
In some embodiments, for the requesting party, it needs to rent not only a certain intelligent sales terminal and/or commodity storage location, but also all the intelligent sales terminals and/or commodity storage locations in a specific area, please refer to fig. 3c, user a needs to rent all theintelligent sales terminals 300 along the route R, and then user a sends a lease request to the system, where the lease request carries lease combination information, and the lease combination information points to multiple intelligent sales terminals and/or commodity storage locations, for example, the lease combination information points to all theintelligent sales terminals 300 along the route R.
Generally, in a business model, in the case that the number of leases of the intelligent sales terminals or the commodity storage locations is large and the number of leases of the intelligent sales terminals or the commodity storage locations is small, the lease price of each intelligent sales terminal or the commodity storage location given to the user with the large lease number is lower than the lease price of each intelligent sales terminal or the commodity storage location given to the user with the small lease number.
Therefore, when the user a needs to rent all theintelligent sales terminals 300 along the avenue R, the system determines the lease price information of all the intelligent sales terminals and/or the commodity storage positions pointed by the lease combination information, for example, the lease number is in the range of 1 to 5, and the lease price information is 5000 yuan/month; the lease quantity is in the range of 5-20, and the lease price information is 4500 yuan/month; the lease quantity is in the range of 20 to 50, and the lease price information is 4000 yuan/month; the lease quantity is in the range of 50 to 100, and the lease price information is 3500 Yuan/month; when the lease quantity exceeds 100, the lease price information is 3000 yuan/month.
Therefore, it is assumed that the number of all theintelligent sales terminals 300 along the avenue R is 80, and thus, the lease price information of each intelligent sales terminal is 3500 yuan/month.
Generally, the system may use the lease price information of the intelligent sales terminals as the offer information, that is, the offer information of each intelligent sales terminal is 3500 yuan/month.
In some embodiments, when the user B and the user C also want to rent all theintelligent sales terminals 300 along the main street R, then the user B and the user C also send lease requirements to the system, that is, in this embodiment, the lease request includes three leaser bidding information, and the system performs bidding processing on the lease price information and the leaser bidding information, for example, the bid price of the intelligent sales terminal 300 is 3000, the maximum price is 6000, at time t1, the leaser bidding information given by the user a is 3200, the leaser bidding information given by the user B is 3400, the leaser bidding information given by the user C is 2500, and since the auction price of the leaser bidding information of the user C is lower than the bid price, the lease party bidding information of the user C does not satisfy the auction rule, and the lease request of the user C is recorded as an auction outlet status. At the time t2, the leasing party bidding information given by the user A is 5000, no one continues to yell within a preset time, and since the user A is higher than the bidding price of the leasing party bidding information of the user B and the bidding information of the leasing party of the user A meets the bidding rule, the bidding price of the bidding information of the leasing party of the user A is higher than the starting price and lower than the maximum price, the leasing request of the user A is recorded as the successful state of the auction.
In order to improve the replenishment efficiency and reduce the logistics cost, in some embodiments, the system may further select an optimal geographic location as a warehousing location in a preset map according to an intelligent location algorithm. The intelligent address selection algorithm can adopt various path algorithms such as an ant colony algorithm and the like.
For example, referring to FIG. 4a, in anarea 400 includingvarious merchants 41 located at different locations, thevarious merchants 41 may sell different types of merchandise. In order to more economically and efficiently provide goods to eachmerchant 41 when eachmerchant 41 is out of stock, the system needs to establish awarehousing location 42 in advance in thearea 400, wherein, considering together, thewarehousing location 42 can restock goods to eachmerchant 41 in a more economically efficient manner.
Thus, upon selecting to construct a warehousing location, the system may determine base merchant data within a preset area, e.g., in a navigation map, to locate toarea 400. Generally, after locating thearea 400, since the navigation map generally provides a function of searching for a nearby situation in a specific area, all convenience stores within thearea 400 are searched and identified, so that the user can count all convenience stores within thearea 400, and the system can take the total number of convenience stores within thearea 400 as basic merchant data.
Generally, the system may call a third-party navigation map interface, access the third-party navigation map, determine a target area in the navigation map, then search out all target merchants within the target distinction, and finally count the number of all target merchants, and take the counted number as basic merchant data within a preset area range.
Secondly, the system acquires the ground pushing business data in the preset area range again. Generally, the potential merchants needing to supply goods can only be obtained theoretically by obtaining basic data from the third-party navigation map, and in actual conditions, a replenishment relation needs to be established between the local pushing personnel and each merchant family by family so as to screen all the interested merchants.
Therefore, the system will screen out all the interested merchants according to the basic merchant data and the ground-pushed merchant data, for example, please refer to fig. 4b and 4c, the ground-pushed merchant data is the interested merchant data, so the system relocates the corresponding merchant position from the navigation map according to each interested merchant data, and clears the merchant position of the non-interested merchant from the navigation map.
Finally, the system selects an optimal geographical position from a preset map as the warehousing position according to the geographical positions of all the intended merchants, for example, the system selects a reference point from the preset map according to the geographical positions of all the intended merchants, and the total path from the reference point to the geographical position of each intended merchant is the shortest, so that the system takes the geographical position where the reference point is located as the optimal geographical position, that is, the optimal geographical position as the warehousing position.
In some embodiments, an operator may construct a warehousing location in a plurality of different areas, and each warehousing location may be used as a replenishment location, so that a merchant needing replenishment sends replenishment information to the system, and the system obtains the replenishment information and processes the replenishment information by using an intelligent replenishment algorithm to obtain the replenishment location.
For example, the replenishment information carries the merchant name, the geographic location, the replenishment items, the replenishment quantity, and the like of the replenishment merchant. The system analyzes the replenishment information, extracts the geographical position of the replenishment merchant or the intelligent sales terminal to be replenished from the replenishment information, and enters the next process. Firstly, a system screens out a plurality of reference replenishment positions, wherein the reference replenishment positions are closer to a replenishment merchant or an intelligent sales terminal to be replenished and are ranked in a preset range. Secondly, the system judges whether the replenishment commodities with the corresponding replenishment quantity are stored in each reference replenishment position, and if not, the reference replenishment positions are ignored. If so, the system removes the reference replenishment positions where the replenishment commodities with the corresponding replenishment quantity are not stored from the reference replenishment positions to obtain one or more residual reference replenishment positions. And finally, the system screens out a reference replenishment position closest to the merchant to be replenished or the intelligent sales terminal to be replenished from the rest one or more reference replenishment positions according to the geographical position and the optimal path algorithm of the merchant to be replenished or the intelligent sales terminal to be replenished, and transports the goods from the final replenishment position to replenish the merchant to be replenished or the intelligent sales terminal to be replenished.
For another example, referring to fig. 5, themerchant 51 to be replenished sends replenishment information to theinformation processing system 52, theinformation processing system 52 selects a replenishment position according to the replenishment information, and sends replenishment ordering information to thetakeout person 53, and thetakeout person 53 goes to the replenishment position according to the replenishment ordering information to extract corresponding goods, and delivers the goods to themerchant 51 to be replenished.
In some embodiments, the user may purchase the goods from the intelligent sales terminal online, for example, the user sends online ordering information to the information processing system, the information processing system determines the goods pick-up terminal according to the online ordering information, and sends the goods pick-up code to the goods pick-up terminal, so that the intelligent sales terminal performs the shipment processing.
The goods taking terminal can be a handheld terminal of a takeout person or a handheld terminal of a user.
For example, referring to fig. 6, auser 61 sends online ordering information to aninformation processing system 62 at a mobile phone, theinformation processing system 62 processes the online ordering information, generates a takeout delivery order, and sends the takeout delivery order to atakeout person 63, where the takeout delivery order includes a pickup code, a geographical location of an intelligent sales terminal, a delivery address, a customer name, and the like. Then, thetakeout personnel 63 find the geographical position of theintelligent sales terminal 64, input the goods picking code at theintelligent sales terminal 64, theintelligent sales terminal 64 sends the goods picking code to theinformation processing system 62, theinformation processing system 62 verifies whether the goods picking code is legal, if the goods picking code is legal, theinformation processing system 62 instructs the intelligent sales terminal 64 to push out the corresponding goods, and then thetakeout personnel 63 take out the goods and distribute the goods to theuser 61.
For another example, referring to fig. 7, the user 71 sends the online ordering information to the information processing system 72 at a mobile phone, and the information processing system 72 processes the online ordering information, generates a self-service delivery receipt, and sends the self-service delivery receipt to the user 71, where the self-service delivery receipt includes a delivery code, a geographic location of the intelligent sales terminal, and the like. Then, the user 71 finds the geographical position of the intelligent sales terminal 73, inputs the goods picking code into the intelligent sales terminal 73, the intelligent sales terminal 73 sends the goods picking code to the information processing system 72, the information processing system 72 verifies whether the goods picking code is legal, if the goods picking code is legal, the information processing system 72 instructs the intelligent sales terminal 73 to push out the corresponding goods, and then the user 71 takes out the goods.
In some embodiments, the system may further obtain order information, where the order information carries information of purchased goods, determine, according to the order information, a promotional goods associated with the purchased goods, determine whether the intelligent sales terminal and/or the goods storage location places the promotional goods, and if so, present goods information of the promotional goods.
For example, a user purchases a piece of bread at an intelligent sales terminal or a commodity storage position, and since the bread is associated with yogurt in advance by the system, the system judges whether yogurt is placed at the intelligent sales terminal or the commodity storage position or not according to order information, and if so, the system presents the commodity information of the yogurt to the user.
In some embodiments, the system may further obtain commodity sales information located at the intelligent sales terminal and/or the commodity storage location, where the commodity sales information includes a commodity sales volume of the sold commodity, determine whether the commodity sales volume meets a preset promotion condition, determine, if yes, a target user associated with the sold commodity, and send the commodity sales information to the target user.
For example, the sale amount of the yogurt at the intelligent sales terminal and/or the commodity storage position is 20 bottles/day, the preset sale threshold value is 50 bottles/day, and since the sale amount of the yogurt is smaller than the preset sale threshold value, the system extracts historical consumption data, determines that a user who often purchases the yogurt is a target user, and sends yogurt promotion information to the target user.
Therefore, in this way, it is possible to increase the sales volume of the commodities.
It should be noted that, in the foregoing embodiments, a certain order does not necessarily exist between the foregoing steps, and it can be understood by those skilled in the art from the description of the embodiments of the present invention that, in different embodiments, the foregoing steps may have different execution orders, that is, may be executed in parallel, may also be executed in an exchange manner, and the like.
As another aspect of the embodiment of the present invention, an embodiment of the present invention provides a lease information processing apparatus for an intelligent sales terminal, which is applied to a server. The lease information processing device of the intelligent sales terminal can be used as one of the software function units, the lease information processing device of the intelligent sales terminal comprises a plurality of instructions, the instructions are stored in the memory, and the processor can access the memory and call the instructions to execute so as to complete the lease information processing method of the intelligent sales terminal.
Referring to fig. 8a, the rentalinformation processing apparatus 800 of the smart sales terminal includes: a pricing information acquisition module 801, a quotation processing module 802, and a rental information generation module 803.
The pricing information acquiring module 801 is configured to acquire pricing associated information of the intelligent sales terminal and/or the commodity storage location, where the intelligent sales terminal includes at least one commodity storage location;
the quotation processing module 802 is configured to process the pricing associated information by using a preset pricing algorithm to obtain quotation information, where the quotation information includes quotation information of the intelligent sales terminal and/or the commodity storage location;
the lease information generation module 803 is configured to process the offer information using a preset intelligent algorithm to obtain lease information of the intelligent sales terminal and/or the commodity storage location.
Due to the pricing associated information, more accurate quotation information can be obtained, so that more comprehensive and accurate leasing information is provided for the user, and the user can make a corresponding leasing decision according to the leasing information.
In some embodiments, the pricing association information includes consumption group information of an area where the intelligent sales terminal is located, and the lease information generating module 803 is specifically configured to: and processing the consumer group information by using a preset pricing algorithm to obtain the quotation information of the intelligent sales terminal and/or the commodity storage position.
In some embodiments, the pricing association information further includes commodity sales information in an area where the intelligent sales terminal is located, and the rental information generating module 803 is specifically configured to: and processing the consumer group information and the commodity sales information together by using a preset pricing algorithm to obtain the quotation information of the intelligent sales terminal and/or the commodity storage position.
In some embodiments, referring to fig. 8b, theapparatus 800 further comprises: lease request obtaining module 804 and lease party information determining module 805.
The lease request acquiring module 804 is used for acquiring a lease request, wherein the lease request comprises lease party bidding information;
the leasing party information determining module 805 is configured to process the bidding information of the leasing party by using a preset bidding algorithm according to the leasing request, and determine the leasing party information of the intelligent sales terminal and/or the commodity storage location.
In some embodiments, the lease request further includes lease combination information, and the lease party information determining module 805 is specifically configured to: determining all intelligent sales terminals and/or commodity storage positions pointed by the leasing combination information; determining lease price information of all intelligent sales terminals and/or commodity storage positions; and carrying out bidding treatment on the lease price information and the lease party bidding information.
In some embodiments, the renter information determining module 805 is specifically configured to: and calculating lease price information of all the intelligent sales terminals and/or the commodity storage positions by using an intelligent price algorithm according to the geographical position information of all the intelligent sales terminals and/or the commodity storage positions.
In some embodiments, the lease request includes a plurality of lease party bid information, and the lease party information determination module 805 is specifically configured to: determining the starting price and the highest price of the intelligent sales terminal and/or the commodity storage position; recording a lease request of lease party bidding information meeting auction rules as an auction success state, wherein the auction price of the lease party bidding information is higher than the start price and lower than the maximum price, and is also higher than the auction prices of the rest lease party bidding information; and recording a lease request of the lease party bidding information which does not meet the auction rule as an auction outgoing state, wherein the auction price of the lease party bidding information is lower than the auction price.
In some embodiments, with continued reference to fig. 8b, theapparatus 800 further includes an intelligent addressing module 806, and the intelligent addressing module 806 is configured to select an optimal geographic location in the preset map as the warehousing location according to an intelligent addressing algorithm.
In some embodiments, intelligent addressing module 806 is specifically configured to: determining basic merchant data in a preset area range; acquiring ground pushing merchant data in the preset area range; screening out all intention merchants according to the basic merchant data and the ground push merchant data; and selecting the optimal geographical position from a preset map as the warehousing position according to the geographical positions of all the intention commercial tenants.
In some embodiments, the warehousing location comprises a restocking location, theapparatus 800 further comprising: a replenishment information acquiring module 807 and a replenishment position acquiring module 808.
The replenishment information acquisition module 807 is configured to acquire replenishment information;
the replenishment position acquisition module 808 is configured to process the replenishment information by using an intelligent replenishment algorithm to obtain a replenishment position.
In some embodiments, the replenishment location acquisition module 808 is specifically configured to: extracting the geographical position of the commercial tenant to be replenished or the intelligent sales terminal to be replenished from the replenishment information; and obtaining a replenishment position according to the geographic position and the optimal path algorithm.
In some embodiments, the merchandise storage locations include warehouses and/or aisles.
In some embodiments, theapparatus 800 further comprises: an order information acquisition module 809, and a promotional information determination module 810.
The order information obtaining module 809 is configured to obtain order information, where the order information carries information of purchased commodities;
the promotion information determining module 810 is configured to determine a promotion item associated with the purchased item according to the order information, determine whether the intelligent sales terminal and/or the item storage location places the promotion item, and if so, present the item information of the promotion item.
In some embodiments, theapparatus 800 further comprises: a commodity sales acquisition module 811 and a commodity promotion module 812.
The commodity sales amount obtaining module 811 is configured to obtain commodity sales information located at the intelligent sales terminal and/or the commodity storage location, where the commodity sales information includes a commodity sales amount of a sold commodity;
the goods sales promotion module 812 is configured to determine whether the sales volume of the goods meets a preset sales promotion condition; and if so, determining a target user associated with the sold commodity, and sending commodity promotion information to the target user.
In some embodiments, theapparatus 800 further comprises: a placing order information obtaining module 813, a goods taking terminal determining module 814 and a goods picking code sending module 815.
The order information acquiring module 813 is used for acquiring the order information of the line;
the goods taking terminal determining module 814 is used for determining a goods taking terminal according to the online ordering information;
the goods picking code sending module 815 is used for sending goods picking codes to the goods taking terminal so as to enable the intelligent sales terminal to carry out goods delivery processing.
The lease information processing device of the intelligent sales terminal can execute the lease information processing method of the intelligent sales terminal provided by the embodiment of the invention, and has corresponding functional modules and beneficial effects of the execution method. For technical details that are not described in detail in the embodiment of the rental information processing apparatus of the intelligent sales terminal, reference may be made to the rental information processing method of the intelligent sales terminal provided in the embodiment of the present invention.
As another aspect of the embodiments of the present invention, in an embodiment of the present invention, there is provided a server, referring to fig. 9, where theserver 900 includes: one or more processors 91 and memory 92. In fig. 9, one processor 91 is taken as an example.
The processor 91 and the memory 92 may be connected by a bus or other means, and fig. 9 illustrates the connection by a bus as an example.
The memory 92 is used as a non-volatile computer-readable storage medium, and can be used for storing non-volatile software programs, non-volatile computer-executable programs, and modules, such as program instructions/modules corresponding to the rental information processing method of the intelligent sales terminal in the embodiment of the present invention. The processor 91 executes the rental information processing method of the intelligent sales terminal of each of the above embodiments or various functional applications and data processing of the rental information processing apparatus of the intelligent sales terminal of each of the above embodiments by executing the nonvolatile software program, instructions, and modules stored in the memory 92.
The memory 92 may include high speed random access memory and may also include non-volatile memory, such as at least one magnetic disk storage device, flash memory device, or other non-volatile solid state storage device. In some embodiments, the memory 92 may optionally include memory located remotely from the processor 91, and such remote memory may be connected to the processor 91 via a network. Examples of such networks include, but are not limited to, the internet, intranets, local area networks, mobile communication networks, and combinations thereof.
The program instructions/modules are stored in the memory 92, and when executed by the one or more processors 91, execute the rental information processing method of the intelligent sales terminal in any of the above-described method embodiments, for example, thereby executing the rental information processing method of the intelligent sales terminal in each of the above-described embodiments, or various functional applications and data processing of the rental information processing apparatus of the intelligent sales terminal in each of the above-described embodiments.
The embodiment of the invention also provides a non-transitory computer readable storage medium, which stores computer executable instructions for causing a server to execute the lease information processing method of the intelligent sales terminal.
An embodiment of the present invention provides a computer program product, which includes a computer program stored on a non-volatile computer-readable storage medium, where the computer program includes program instructions, and when the program instructions are executed by a server, the server is caused to execute any one of the rental information processing methods of the intelligent sales terminal.
The above-described embodiments of the apparatus or device are merely illustrative, wherein the unit modules described as separate parts may or may not be physically separate, and the parts displayed as module units may or may not be physical units, may be located in one place, or may be distributed on a plurality of network module units. Some or all of the modules may be selected according to actual needs to achieve the purpose of the solution of the present embodiment.
Through the above description of the embodiments, those skilled in the art will clearly understand that each embodiment can be implemented by software plus a general hardware platform, and certainly can also be implemented by hardware. Based on such understanding, the above technical solutions substantially or contributing to the related art may be embodied in the form of a software product, which may be stored in a computer-readable storage medium, such as ROM/RAM, magnetic disk, optical disk, etc., and includes instructions for causing a computer device (which may be a personal computer, a server, or a network device, etc.) to execute the method according to the embodiments or some parts of the embodiments.
Finally, it should be noted that: the above examples are only intended to illustrate the technical solution of the present invention, but not to limit it; within the idea of the invention, also technical features in the above embodiments or in different embodiments may be combined, steps may be implemented in any order, and there are many other variations of the different aspects of the invention as described above, which are not provided in detail for the sake of brevity; although the present invention has been described in detail with reference to the foregoing embodiments, it will be understood by those of ordinary skill in the art that: the technical solutions described in the foregoing embodiments may still be modified, or some technical features may be equivalently replaced; and the modifications or the substitutions do not make the essence of the corresponding technical solutions depart from the scope of the technical solutions of the embodiments of the present application.

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