Detailed Description
The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the drawings in the embodiments of the present application, and it is obvious that the described embodiments are only a part of the embodiments of the present application, and not all the embodiments. All other embodiments obtained by a person of ordinary skill in the art based on the embodiments in the present application without any creative effort belong to the protection scope of the present application.
The core of the application is to provide a vehicle environment control method, a vehicle environment control device and a computer readable storage medium.
In order that those skilled in the art will better understand the disclosure, the following detailed description will be given with reference to the accompanying drawings.
In the scene that the passenger uses the vehicle-mounted film watching system, in order to relieve the situation that the passenger feels tired due to long-time taking a car, the application provides the in-car environment control method to provide an immersive film watching environment for the user, so that the passenger taking experience is improved. In specific implementation, the vehicle central control system determines a video to be played in advance, acquires a video configuration file of the video to be played, analyzes the video configuration file to acquire an in-vehicle environment control instruction, and controls the in-vehicle environment feedback device according to the control instruction, so that the environment feedback device can create a corresponding environment for a user according to the content of the currently played video.
Fig. 1 shows a flowchart of a first embodiment of a vehicle environment control method of the invention, which, as shown in fig. 1, includes the steps of:
s10: and acquiring a video configuration file of the video to be played.
In a specific implementation, the control system obtains a playlist of the video playing system in advance, so as to determine a video to be played, where the control system may be an automobile central control of the vehicle or a control chip of the video playing system, and since an automobile central control processor of the vehicle has a stronger processing capability, the efficiency of obtaining the configuration information and controlling the environment feedback device can be effectively improved. The control chip of the video playing system is mainly used for acquiring a video to be played sent by the automobile central control and playing the related video.
It can be understood that the video to be played may be a video stored in a local storage device, or may also be a video acquired through a network. When the video to be played is the video acquired through the network, the automobile central control system needs to acquire the video configuration file and also needs to perform integrity verification on the video file, and timely sends out early warning to passengers and drivers when the incomplete video file is found, so that the situation of playing failure is prevented, and the use experience of users is improved.
It should be noted that the video configuration file of the video to be played in this embodiment may be an information file transmitted to the video storage device along with the video file when the user acquires the video, or may be an information file processed by the vehicle central control system processor to generate corresponding configuration information according to the video content. In the latter scheme, the file for storing the configuration information may be a file in the form of a text document, and the configuration file is cleaned at preset intervals; or may be a cache file. The latter mode occupies smaller memory space, and is more suitable for equipment with smaller storage equipment capacity, such as a vehicle central control system. It will be appreciated that when the vehicle is able to connect to a network, the video files and video information profiles may be stored on a remote server, and the relevant files retrieved from the server as needed, to address the lack of local storage.
Further, if the video is processed by the processor of the central control system of the automobile to generate corresponding configuration information, the video content information (for example, the color information of the currently played video frame, the scene change information of the currently played video, the temperature information and the weather information of each scene in each video frame during the scene change process, etc.) and the video track information need to be obtained.
S11: and analyzing the video configuration file to obtain the control instruction and the corresponding relation between the control instruction and the video playing time node.
In a specific implementation, the control unit needs to parse the acquired video configuration file to acquire the control instruction. The control unit analyzes the video configuration file to obtain the video content information and determines a control instruction to be executed according to the video content information, wherein the video configuration file obtained by the control unit may only contain the video content information (for example, the color of the current video frame is red, the temperature is 30 ℃, and sound is emitted from the front of the current frame image); the video configuration file may further include a control instruction generated in advance according to the video content, and the control instruction to be executed can be directly acquired after the control unit analyzes the video configuration file.
It should be noted that, in order to provide better video viewing experience for passengers, the environment feedback device needs to make corresponding feedback according to the currently played video content, and to achieve this purpose, the control instruction is obtained, and at the same time, the corresponding relationship between the control instruction and the time node needs to be obtained, so as to determine which control instruction should be executed at what time node.
It can be understood that the control command mentioned in the embodiment of the present application at least includes an air conditioner air output adjustment command, an air conditioner temperature adjustment command, a seat adjustment command, a lighting system adjustment command, a power amplifier adjustment command, a fragrance system adjustment command, and the like.
S12: and when a playing instruction of the video to be played is received, determining a control instruction corresponding to the current playing time node according to the corresponding relation and the current playing time node of the video to be played.
S13: and executing the control command to control the work of the environment feedback device of the vehicle.
In this embodiment, the control command may be executed by a central control system processor of the automobile, and the control command may be executed by a video player processor, which is not limited herein.
It is understood that the environmental feedback devices mentioned in the embodiments of the present application include at least an on-vehicle air conditioner, a fragrance system, a seat, a lighting system, and the like.
In specific implementation, when a playing instruction for playing a video to be played is received, a time node can be determined according to the video playing progress, a control instruction to be executed can be determined according to the corresponding relation between the control instruction and the video time node, and an automobile central control system can also acquire the current video playing progress at any time to determine the control instruction to be executed according to the current playing time node. The control instructions may be executed in the following manner: the control unit determines a control instruction corresponding to each time node of video playing by monitoring the video playing condition and executes the control instruction; the time for executing each control instruction can be predetermined, the control instructions are started to be executed according to the time sequence while the video is started to be played, and the process for executing the control instructions is not interfered with the video playing process. It should be noted that each time node may correspond to one control instruction, or may correspond to a plurality of control commands, which is not limited herein.
It can be understood that the control command is executed to control the operation of the feedback devices in each link, which consumes energy, and in order to reduce the energy waste, the environment feedback devices can be divided into a plurality of feedback systems, so that the control unit can control the environment feedback devices of the feedback systems respectively, and stop the environment feedback devices corresponding to the seats of the passengers not sitting in the seats in time. In a specific implementation, a device whose distance from a certain seat is smaller than a preset distance may be recorded as a feedback system corresponding to the seat, taking the distance between each environmental feedback device and the seat as a standard.
In order to improve the video watching experience of the user, the body health condition of the passenger and whether the passenger is in a sleeping state can be monitored, and when the body health condition of the passenger is poor or the passenger is in the sleeping state, the feedback strength of the environment feedback device corresponding to the seat where the passenger sits is weakened or the environment feedback device is controlled to stop working properly.
In the present embodiment, there is provided a vehicle environment control method including: and acquiring a video configuration file of the video to be played, and acquiring the content of the video to be played according to the video configuration file so as to control the work of the environment feedback device of the vehicle according to the video content. After the video configuration file is obtained, the video configuration file is analyzed to obtain the control instruction and the corresponding relation between the control instruction and the video playing time node, so that the control instruction to be executed at each time node is determined. When a playing instruction of a video to be played is received, a control instruction corresponding to the current playing time node is determined according to the corresponding relation and the current playing time node of the video to be played, and the control instruction is executed to control the environment feedback device of the vehicle to work, so that the environment feedback device can make corresponding feedback according to the video playing content, and better video watching experience is provided for passengers.
Fig. 2 shows a flowchart of a second embodiment of the vehicle environment control method of the present invention, which is executed by a vehicle control unit (an automotive center control system processor or a video playback device processor). As shown in fig. 2, the method further comprises the steps of:
s20: and analyzing the video to be played to acquire the picture information of the video to be played.
S21: and determining a control instruction according to the picture information.
S22: and writing the control instruction and the video playing time node corresponding to the control instruction into the video configuration file.
In a specific implementation, before the control unit plays a video to be played, the control unit needs to pre-process the video to obtain the relevant configuration information of the video. The video content can be identified based on a manual screening mode, but because the video content is more, a large amount of time cost and labor cost are consumed, and a video content identification tool or software can be used for identifying the video content. The second scheme is faster and more flexible, and the efficiency of generating the configuration information can be greatly improved. It is understood that the configuration information may include: the main color information of each frame in the video, the audio track information of the video, the presence or absence of scene change information of each video frame, the scene information (such as scene temperature information, scene weather information, etc.) in the current video frame, the picture jitter information in the current video frame, etc.
It can be understood that the control unit may generate corresponding video configuration information only according to the video content, and write the configuration information into the configuration file, when the video is played, the control unit reads the video configuration file to obtain the configuration information, and then generates a corresponding control instruction according to the configuration information to control the environment feedback device to operate; or after the configuration information is generated, the control instruction to be executed is determined according to the corresponding relation between the configuration information and the control instruction, and the control instruction is written into the video configuration file. When the video is played, the control unit reads the video configuration file to acquire the control instruction, and executes the control instruction to control the environment feedback device to work. In this embodiment, the second scheme is selected, and a control instruction is generated in the preprocessing stage, so as to prevent a feedback action of the environmental feedback device from lagging behind when the control unit is slow in processing speed, thereby improving the video watching experience of the user.
Further, in order to ensure that the feedback provided by the environment feedback device is consistent with the picture, time nodes corresponding to the control commands are recorded, so that the corresponding control commands are executed at each time node.
In a specific implementation, the vehicle's environmental feedback device generally includes: the vehicle-mounted air conditioner, the fragrance system, the seat and the lighting system; correspondingly, the control instruction comprises the following steps: the air conditioner air output adjusting instruction, the air conditioner temperature adjusting instruction, the seat adjusting instruction, the lighting system adjusting instruction, the power amplifier adjusting instruction and the fragrance system adjusting instruction.
In specific implementation, according to the color information and the brightness information of the current playing picture of the video in the video configuration information, the lighting system is controlled to adapt the color and the brightness of the vehicle atmosphere lamp to the picture. Judging whether wind exists in the current scene according to weather information in the video configuration information so as to correspondingly adjust the air outlet quantity of the air conditioner, for example, when the scene of a windy day is broadcast and amplified in the video, the air outlet quantity of the air conditioner is increased; when a quiet indoor picture is played in the video, the air conditioner air output is reduced. Adjusting the fragrance system according to the odor information of the current time period in the video configuration information, for example, if a picture of a garden is being played in the video, the fragrance is turned on, and the fragrance is set to the fragrance of the garden; if a picture containing a bad smell is played in the video, the fragrance smell is turned on and adjusted, but the release amount of the fragrance is reduced, so that the uncomfortable smell is prevented from being remained in the vehicle for a long time. Judging whether the image in the current time period has the information of violent vibration according to the video configuration information to control the seat to perform small-range adjustment, for example, if the image of bumpy running is played in the video, the motion of the seat should be adjusted, and the seat controller is utilized to simulate the vibration effect of the seat; if the sleeping picture is being played in the video, the seat should be adjusted to a comfortable position suitable for the half-lying position of the passenger in a small amplitude. Adjusting the temperature of the air conditioner according to the weather information of the scene in the current playing picture in the video configuration information, for example, if a picture walking in a desert is being played in the video, the temperature of the air conditioner should be properly adjusted at the moment to enable the temperature of the air conditioner to rise; if the picture of the ice, the snow and the ground is being played in the video, the temperature of the air conditioner is properly adjusted to reduce the temperature of the air conditioner.
In addition, the power amplification sound at different positions in the vehicle can be adjusted according to different audio track information in each scene in the video configuration information, for example, if the sound which is played in the video is transmitted from the left side of the picture, the sound field in the vehicle is adjusted to the left side of the vehicle in a biased manner, and the sound is ensured to be transmitted from the left side; if the sound played in the video is transmitted from the rear of the picture, the sound field deviation in the vehicle is adjusted to the rear of the vehicle, and the sound is transmitted from the rear.
S23: and writing the normal state of the environment feedback device into the log file so as to recover the normal state of the environment feedback device according to the log file after the playing of the video to be played is finished.
The normal state of the environment feedback device is a working state that the environment feedback device accords with the use habit of the user when the user takes the vehicle and the video is not played.
It will be appreciated that since the environmental feedback device operates to provide feedback to the user during the video playback, the status of the environmental feedback device changes (e.g., seat position, air conditioning temperature, light color and brightness, etc.), and the video playback may stop and cause inconvenience to the passengers. In order to improve the riding experience of passengers, before the feedback devices are controlled to work according to the video, the working states of the working of the feedback devices are recorded and stored in a log file, and after the video playing is finished or stopped, if the video is not continuously played within a first threshold time, the working state information of the environment feedback devices before the video playing is read from the log file, so that the working states of the environment feedback devices are restored to the state before the video playing. The first threshold time may be set by the user himself and may be 10s, 20s, 1min, etc.
Furthermore, the working state of the environment feedback device is restored to the position before and after the video is played, and the working state of the environment feedback device can be properly adjusted according to the current environment in the vehicle, so that the environment in the vehicle is restored to the position before the video is played as soon as possible. For example, if the temperature in the vehicle is low, the temperature of the air conditioner is appropriately increased; if the fragrance system is adjusted in the video playing process, the air conditioner external circulation is started to quickly evacuate the odor, and the passenger riding experience is prevented from being influenced.
S10: and acquiring a video configuration file of the video to be played.
S11: and analyzing the video configuration file to obtain the control instruction and the corresponding relation between the control instruction and the video playing time node.
S12: and when a playing instruction of the video to be played is received, determining a control instruction corresponding to the current playing time node according to the corresponding relation and the current playing time node of the video to be played.
S13: and executing the control command to control the work of the environment feedback device of the vehicle.
In specific implementation, the control unit reads the video to be played to obtain a video configuration file of the video to be played, and obtains the content of the video to be played according to the video configuration file, so as to control the operation of the environment feedback device of the vehicle according to the video content. After the video configuration file is obtained, the video configuration file is analyzed to obtain the control instruction and the corresponding relation between the control instruction and the video time node, so that the control instruction to be executed at each time node is determined. And according to the corresponding relation and the playing progress of the video to be played, executing a control instruction to control the environment feedback device to work, so that the environment feedback device can make corresponding feedback according to the video playing content, and better video watching experience is provided for passengers.
In this embodiment, the working state of the environment feedback device is recorded before the working state of the environment feedback device is adjusted, so that the working state of the environment feedback device is restored to the state before playing after the video playing is finished, and the riding experience of the user is improved. Meanwhile, the video is preprocessed before the video to be played is played to obtain relevant configuration information of the video, the video to be played is analyzed to obtain picture information of the video to be played, a control instruction is determined according to the picture information, and the control instruction and a time node corresponding to the control instruction are written into a video configuration file. The situation that the control command cannot be generated in time due to insufficient processing capacity of the control unit is avoided, and feedback delay and video playing progress provided by the environment feedback device are caused.
Fig. 3 shows a flowchart of a third embodiment of the vehicle environment control method of the invention, which is executed by the control unit. As shown in fig. 3, the method comprises the steps of:
s10: and acquiring a video configuration file of the video to be played.
S11: and analyzing the video configuration file to obtain the control instruction and the corresponding relation between the control instruction and the video playing time node.
S30: configuration information of a vehicle is acquired.
S31: based on the information, a type of environmental feedback device supported by the vehicle is determined.
It should be noted that before controlling the operation of the environment feedback device, it is also necessary to obtain vehicle hardware information to obtain the type of the feedback device of the vehicle, so as to adjust the environment feedback device of the vehicle according to the video playing picture.
In specific implementation, the type of the environment feedback device of the vehicle can be found through a vehicle operation manual, and the type of the environment feedback device owned by the vehicle can also be judged according to an API (application program interface) in a central control system of the vehicle. The type of the environmental feedback means can also be entered and modified manually by the user depending on the actual situation. Such as: the manual disabling of the in-vehicle lighting system in the environmental feedback system may be manually disabled when the user does not desire a light change.
S32: it is determined whether a passenger is present in each seat of the vehicle.
S33: and if the passengers exist, controlling the operation of the regional environment feedback devices corresponding to the seats with the passengers.
In a specific implementation, the absence of an occupant in the seat includes: passengers are never present on the seat, and may leave the seat while in transit.
When the situation that the passenger leaves the seat in the video playing process is detected, the control area environment feedback device stops working, and if the passenger does not return to the seat within the second threshold time, the video playing is stopped and the environment feedback device is restored to the state before the video playing.
The regional environment feedback device is the environment feedback device corresponding to the seat mentioned in the above embodiments, that is, the environment feedback device is located at a distance less than the threshold distance from the seat.
In the implementation, if the environment feedback device corresponding to the unoccupied passenger seat still works, the energy is wasted. In order to solve the problem, the regional environment feedback device corresponding to the seat without passengers does not work, and for the purpose, an opening button can be arranged in the seat, and when the opening button is detected to be pressed, the environment feedback device corresponding to the seat is controlled to work; the sensor can also be used for automatically detecting whether passengers exist on the seat, and if so, the environment feedback device corresponding to the seat is controlled to work. Compared with the first scheme, the second scheme is more intelligent, and the riding experience of passengers can be obviously improved.
In a specific implementation, whether the passenger is in the seat or not can be detected by installing a pressure sensor, a temperature sensor and the like on the seat.
S34: the physical condition information of the passenger is acquired.
S35: and executing a control instruction to control the environment feedback device to work according to the corresponding relation and the playing progress of the video to be played, and controlling the feedback strength of the regional environment feedback device of the seat where the passenger is located according to the physical condition information.
It is understood that a medical instrument (e.g., a sphygmomanometer, etc.) may be installed in a seat to measure physical condition information of a passenger, determine whether the passenger is healthy, provide a high-intensity feedback to the passenger if the passenger is healthy, and provide a low-intensity feedback to the passenger if the passenger is unhealthy. It will be appreciated that the user may also adjust the feedback strength of the environmental feedback device at his or her own discretion.
In specific implementation, a camera can be arranged above the seat, the age of a passenger is judged through a face recognition technology, when the passenger is a teenager or an elderly person, low-intensity feedback is provided for the passenger, and if the passenger is a middle-aged person, high-intensity feedback is provided for the passenger. Furthermore, archive information can be created for the passengers to record the feedback strength required by each passenger and store the feedback strength in the database, after the passengers are identified through the face recognition technology, whether personal setting information of the passengers is stored in the database is judged, if yes, the passengers are provided with services according to the personal setting information of the passengers, and if not, the personal setting information of the passengers is stored in the database after the passengers are asked to agree.
In addition, the embodiment can also detect whether the passenger is in a sleep state, and if the passenger is in the sleep state, the feedback intensity to the passenger should be gradually reduced until the passenger is closed, and the power amplifier sound near the passenger is closed. In addition, if the passenger is observed to be in an exhausted state, the feedback intensity of the passenger is gradually reduced until the passenger is closed, and the power amplification sound near the passenger is closed. The feedback intensity of other passengers is reduced, and the other passengers are not disturbed as much as possible on the premise of ensuring the viewing experience.
It can be understood that, if the vehicle is an electric vehicle and a plurality of display media exist in the vehicle, when it is detected that the vehicle is in a charging state, video information is played in the display media except for the instrument display screen and the video display screen. In addition, if the in-vehicle display medium corresponds to the seat, the display medium corresponding to the seat is stopped from being played after the environment feedback device corresponding to the seat stops operating.
In this embodiment, divide into a plurality of systems with environment feedback device, whether have the environment feedback device operating condition that the passenger adjusted and the seat corresponds on the seat according to the seat, simultaneously, still utilize the sensor to acquire passenger's health status information, provide suitable feedback intensity for the passenger, further improved user's video and watched experience, simultaneously, reduced the waste of resource.
In the above embodiments, the vehicle environment control method is described in detail, and the present application also provides embodiments corresponding to the vehicle environment control device. It should be noted that the present application describes the embodiments of the apparatus portion from two perspectives, one from the perspective of the function module and the other from the perspective of the hardware.
Since the embodiments of the apparatus portion and the method portion correspond to each other, please refer to the description of the embodiments of the method portion for the embodiments of the apparatus portion, which is not repeated here.
Fig. 4 is a block diagram showing a first embodiment of the vehicular environment control apparatus of the invention. As shown in fig. 4, the apparatus includes:
theacquisition module 10 is configured to acquire a video configuration file of a video to be played;
theanalysis module 11 is used for analyzing the video configuration file to obtain the control instruction and the corresponding relation between the control instruction and the video playing time node;
the determiningmodule 12 is configured to determine, when a playing instruction of a video to be played is received, a control instruction corresponding to a current playing time node according to the corresponding relationship and the current playing time node of the video to be played;
and thecontrol module 13 is used for executing a control command to control the work of the environment feedback device of the vehicle.
In an optional manner, the vehicle environment control apparatus further includes a control instruction generation module, configured to generate a control instruction according to content of a video to be played.
In an optional mode, the vehicle environment control device further comprises a first judgment module, a second judgment module and a control module, wherein the first judgment module is used for judging whether passengers exist on the seats or not; if the passengers exist, the regional environment feedback devices corresponding to the seats with the passengers are controlled to work
In an optional mode, the vehicle environment control device further comprises a second judgment module, which is used for judging whether a passenger exists on the seat; and if the passenger exists, the control area environment feedback device works.
In an optional mode, the vehicle environment control device further comprises a second obtaining module, a second judging module and a second obtaining module, wherein the second obtaining module is used for obtaining the physical condition information of the passenger; and controlling the feedback intensity of the regional environment feedback device of the seat where the passenger is located according to the physical condition information.
In an optional manner, the vehicle environment control device further includes a log module, configured to write the working state of the environment feedback device into a log file, so as to recover the working state of the environment feedback device according to the log file after the played video is finished.
The vehicle environment control device comprises a video configuration file for acquiring a video to be played, and acquiring the content of the video to be played according to the video configuration file, so that the environment feedback device of the vehicle can be controlled to work according to the video content. After the video configuration file is obtained, the video configuration file is analyzed to obtain the control instruction and the corresponding relation between the control instruction and the video playing time node, so that the control instruction to be executed at each time node is determined. When a playing instruction of a video to be played is received, a control instruction corresponding to the current playing time node is determined according to the corresponding relation and the current playing time node of the video to be played, and the control instruction is executed to control the environment feedback device of the vehicle to work, so that the environment feedback device can make corresponding feedback according to the video playing content, and better video watching experience is provided for passengers.
Fig. 5 is a block diagram showing a second embodiment of the vehicular environment control apparatus of the invention, and as shown in fig. 5, the vehicular environment control apparatus includes: a memory 20 for storing a computer program;
and a processor 21 for implementing the steps of the vehicle environment control method according to the above-described embodiment when executing the computer program.
The processor 21 may include one or more processing cores, such as a 4-core processor, an 8-core processor, and the like. The processor 21 may be implemented in at least one hardware form of Digital Signal Processing (DSP), Field-Programmable Gate Array (FPGA), and Programmable Logic Array (PLA). The processor 21 may also include a main processor and a coprocessor, where the main processor is a processor for Processing data in an awake state, and is also called a Central Processing Unit (CPU); a coprocessor is a low power processor for processing data in a standby state. In some embodiments, the processor 21 may be integrated with a Graphics Processing Unit (GPU) which is responsible for rendering and drawing the content required to be displayed by the display screen. In some embodiments, the processor 21 may further include an Artificial Intelligence (AI) processor for processing computational operations related to machine learning.
The memory 20 may include one or more computer-readable storage media, which may be non-transitory. Memory 20 may also include high speed random access memory, as well as non-volatile memory, such as one or more magnetic disk storage devices, flash memory storage devices. In this embodiment, the memory 20 is at least used for storing a computer program 201, wherein the computer program is loaded and executed by the processor 21, and then the relevant steps of the vehicle environment control method disclosed in any one of the foregoing embodiments can be implemented. In addition, the resources stored in the memory 20 may also include an operating system 202, data 203, and the like, and the storage manner may be a transient storage manner or a permanent storage manner. Operating system 202 may include, among others, Windows, Unix, Linux, and the like. Data 203 may include, but is not limited to, passenger personal setting information, and the like.
In some embodiments, the vehicle climate control device may further include a display 22, an input/output interface 23, a communication interface 24, a power source 25, and a communication bus 26.
Those skilled in the art will appreciate that the configuration shown in FIG. 5 does not constitute a limitation of vehicle climate control devices and may include more or fewer components than those shown.
The vehicle environment control device provided by the embodiment of the application comprises a memory and a processor, wherein when the processor executes a program stored in the memory, the following method can be realized:
reading a video to be played to obtain a video configuration file of the video to be played; analyzing the video configuration file to obtain a control instruction and a corresponding relation between the control instruction and a video time node; and executing a control instruction to control the environment feedback device to work according to the corresponding relation and the playing progress of the video to be played.
Finally, the application also provides a corresponding embodiment of the computer readable storage medium. The computer-readable storage medium has stored thereon a computer program which, when being executed by a processor, carries out the steps as set forth in the above-mentioned method embodiments.
It is to be understood that if the method in the above embodiments is implemented in the form of software functional units and sold or used as a stand-alone product, it can be stored in a computer readable storage medium. Based on such understanding, the technical solutions of the present application may be embodied in the form of a software product, which is stored in a storage medium and executes all or part of the steps of the methods described in the embodiments of the present application, or all or part of the technical solutions. And the aforementioned storage medium includes: various media capable of storing program codes, such as a usb disk, a removable hard disk, a Read-Only Memory (ROM), a Random Access Memory (RAM), a magnetic disk, or an optical disk.
The vehicle environment control method, the vehicle environment control device and the computer readable storage medium provided by the application are described in detail above. The embodiments are described in a progressive manner in the specification, each embodiment focuses on differences from other embodiments, and the same and similar parts among the embodiments are referred to each other. The device disclosed by the embodiment corresponds to the method disclosed by the embodiment, so that the description is simple, and the relevant points can be referred to the method part for description. It should be noted that, for those skilled in the art, it is possible to make several improvements and modifications to the present application without departing from the principle of the present application, and such improvements and modifications also fall within the scope of the claims of the present application.
It is further noted that, in the present specification, relational terms such as first and second, and the like are used solely to distinguish one entity or action from another entity or action without necessarily requiring or implying any actual such relationship or order between such entities or actions. Also, the terms "comprises," "comprising," or any other variation thereof, are intended to cover a non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements does not include only those elements but may include other elements not expressly listed or inherent to such process, method, article, or apparatus. Without further limitation, an element defined by the phrase "comprising an … …" does not exclude the presence of other identical elements in a process, method, article, or apparatus that comprises the element.