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US20180106618A1 - Systems and methods to determine a location of a mobile device - Google Patents

Systems and methods to determine a location of a mobile device
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Publication number
US20180106618A1
US20180106618A1US15/374,833US201615374833AUS2018106618A1US 20180106618 A1US20180106618 A1US 20180106618A1US 201615374833 AUS201615374833 AUS 201615374833AUS 2018106618 A1US2018106618 A1US 2018106618A1
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United States
Prior art keywords
mobile device
location
radio frequency
navigation system
frequency signals
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Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Abandoned
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US15/374,833
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Gerard Joseph Cerchio
Brian David Wilson
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Onemarket Network LLC
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Onemarket Network LLC
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Priority to US15/374,833priorityCriticalpatent/US20180106618A1/en
Assigned to Westfield Labs CorporationreassignmentWestfield Labs CorporationASSIGNMENT OF ASSIGNORS INTEREST (SEE DOCUMENT FOR DETAILS).Assignors: WILSON, Brian David, CERCHIO, Gerard Joseph
Assigned to WESTFIELD RETAIL SOLUTIONS, INC.reassignmentWESTFIELD RETAIL SOLUTIONS, INC.CHANGE OF NAME (SEE DOCUMENT FOR DETAILS).Assignors: Westfield Labs Corporation
Priority to CA3039050Aprioritypatent/CA3039050A1/en
Priority to EP17835520.2Aprioritypatent/EP3527016A2/en
Priority to AU2017341823Aprioritypatent/AU2017341823A1/en
Priority to PCT/US2017/056535prioritypatent/WO2018071782A2/en
Assigned to OneMarket Network LLCreassignmentOneMarket Network LLCCHANGE OF NAME (SEE DOCUMENT FOR DETAILS).Assignors: Westfield Retail Solutions LLC
Assigned to Westfield Retail Solutions LLCreassignmentWestfield Retail Solutions LLCCHANGE OF NAME (SEE DOCUMENT FOR DETAILS).Assignors: WESTFIELD RETAIL SOLUTIONS, INC.
Publication of US20180106618A1publicationCriticalpatent/US20180106618A1/en
Abandonedlegal-statusCriticalCurrent

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Abstract

Systems and methods to determine a location of a mobile device by combining a radio frequency navigation system and an inertial navigation system, where the radio frequency navigation system determines a location of the mobile device in reference to a map of radio frequency signals and the inertial navigation system based on dead reckoning the position of the mobile device based on measurements from motion sensors. When the radio frequency navigation system produces accurate results, the mobile device automatically re-initializes the inertial navigation system using the accurate result from the radio frequency navigation system.

Description

Claims (20)

What is claimed is:
1. A method to determine a location of a mobile device, the method comprising:
storing, in the mobile device, a map of radio frequency signal characteristics in a region identified in the map;
receiving, in a transceiver of the mobile device, radio frequency signals in the region;
determining, by the mobile device, characteristics of the radio frequency signals received in the transceiver;
matching the characteristics of the radio frequency signals with the frequency signal characteristics of the map at a first location in the map;
determining, by an inertial navigation system of the mobile device, a second location based on inertial sensor inputs;
determining, by the mobile device, that a confidence level of the first location as a current location of the mobile device is higher than a confidence level of the second location as the current location of the mobile device; and
initializing the inertial navigation system of the mobile device based at least in part on the first location.
2. The method ofclaim 1, wherein the characteristics of the radio frequency signals received in the transceiver include an identifier of a source that transmits the radio frequency signals.
3. The method ofclaim 2, wherein the characteristics of the radio frequency signals received in the transceiver include a strength level indicator of the radio frequency signals transmitted from the source.
4. The method ofclaim 1, wherein the radio frequency signals received in the transceiver include signals transmitted from a plurality of sources.
5. The method ofclaim 4, wherein the plurality of sources include at least one of:
an access point for a wireless local area network;
a repeater for a wireless local area network;
a wireless router;
a beacon device; and
a bluetooth device.
6. The method ofclaim 1, wherein the initializing of the inertial navigation system of the mobile device based at least in part on the first location includes setting the first location as an initial estimate of the location of the mobile device in dead reckoning position.
7. The method ofclaim 1, further comprising:
computing a third location as the current location of the mobile device based on a weighted average of the first location and the second location.
8. The method ofclaim 7, wherein the first location and the second location are weighted according to the confidence level of the first location as the current location of the mobile device and the confidence level of the second location as the current location of the mobile device respectively in computing the weighted average.
9. The method ofclaim 8, wherein the initializing of the inertial navigation system of the mobile device based at least in part on the first location includes setting the second location as an initial estimate of the location of the mobile device in dead reckoning position.
10. The method ofclaim 1, further comprising:
determining, by the inertial navigation system of the mobile device, a plurality of locations of the mobile device over a period of time based on the inertial sensor inputs, wherein the plurality of locations include the second location, and the radio frequency signals received in the a transceiver are received during the period of time; and
generating, by the mobile device, a local distribution of the characteristics of the radio frequency signals over the plurality of locations by correlating times of the received radio frequency signals in the time period and times of the plurality of locations determined for the time period;
wherein the matching includes matching the local distribution to the frequency signal characteristics of the map in a local area that includes the first location in the map.
11. The method ofclaim 1, wherein the initializing of the inertial navigation system of the mobile device is in response to a determination that the confidence level of the first location as the current location of the mobile device is higher than the confidence level of the second location as the current location of the mobile device.
12. The method ofclaim 1, wherein the initializing of the inertial navigation system of the mobile device is in response to a determination that the confidence level of the first location as the current location of the mobile device is higher than a predetermined threshold.
13. The method ofclaim 1, wherein the initializing of the inertial navigation system of the mobile device is in response to a determination that the confidence level of the first location as the current location of the mobile device is higher than a predetermined threshold and higher than the confidence level of the second current location as the location of the mobile device.
14. A non-transitory computer storage medium storing instructions which when executed on a mobile device, cause the mobile device to perform a method in determining a location of the mobile device, the method comprising:
storing, in the mobile device, a map of radio frequency signal characteristics in a region identified in the map;
receiving, in a transceiver of the mobile device, radio frequency signals in the region;
determining, by the mobile device, characteristics of the radio frequency signals received in the transceiver;
matching the characteristics of the radio frequency signals with the frequency signal characteristics of the map at a first location in the map;
determining, by an inertial navigation system of the mobile device, a second location based on inertial sensor inputs;
determining, by the mobile device, that a confidence level of the first location as a current location of the mobile device is higher than a confidence level of the second location as the current location of the mobile device; and
initializing the inertial navigation system of the mobile device based at least in part on the first location.
15. The non-transitory computer storage medium ofclaim 14, wherein the inertial sensor inputs are received from motion sensors of the mobile device.
16. The non-transitory computer storage medium ofclaim 15, wherein the motion sensors include accelerometers.
17. A mobile device, comprising:
a memory storing a map of radio frequency signal characteristics in a region identified in the map;
a transceiver to receive radio frequency signals in the region;
inertial sensors to generate inertial sensor inputs; and
at least one microprocessor executing at least one mobile application to:
determine characteristics of the radio frequency signals received in the transceiver;
match the characteristics of the radio frequency signals with the frequency signal characteristics of the map at a first location in the map;
determine, based on the inertial sensor inputs, a second location based on inputs;
determine that a confidence level of the first location as a current location of the mobile device is higher than a confidence level of the second location as the current location of the mobile device; and
initialize, based at least in part on the first location, dead reckoning operations according to subsequent inputs received from the inertial sensors.
18. The mobile device ofclaim 17, wherein the characteristics of the radio frequency signals received in the transceiver include:
an identifier of a source that transmits the radio frequency signals; and
a signal strength level of the radio frequency signals transmitted from the source.
19. The mobile device ofclaim 17, wherein the inertial sensors include accelerometers and gyroscopes.
20. The mobile device ofclaim 17, wherein the dead reckoning operations according to the subsequent inputs received from the inertial sensors are initialized using the first location in response to a determination that the confidence level of the first location as the current location of the mobile device is higher than both a predetermined threshold and the confidence level of the second location as the current location of the mobile device.
US15/374,8332016-10-142016-12-09Systems and methods to determine a location of a mobile deviceAbandonedUS20180106618A1 (en)

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Application NumberPriority DateFiling DateTitle
US15/374,833US20180106618A1 (en)2016-10-142016-12-09Systems and methods to determine a location of a mobile device
CA3039050ACA3039050A1 (en)2016-10-142017-10-13Systems and methods to determine a location of a mobile device
EP17835520.2AEP3527016A2 (en)2016-10-142017-10-13Systems and methods to determine a location of a mobile device
AU2017341823AAU2017341823A1 (en)2016-10-142017-10-13Systems and methods to determine a location of a mobile device
PCT/US2017/056535WO2018071782A2 (en)2016-10-142017-10-13Systems and methods to determine a location of a mobile device

Applications Claiming Priority (4)

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US201662408261P2016-10-142016-10-14
US201662408265P2016-10-142016-10-14
US201662408264P2016-10-142016-10-14
US15/374,833US20180106618A1 (en)2016-10-142016-12-09Systems and methods to determine a location of a mobile device

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US15/374,833AbandonedUS20180106618A1 (en)2016-10-142016-12-09Systems and methods to determine a location of a mobile device
US15/374,874Expired - Fee RelatedUS10178495B2 (en)2016-10-142016-12-09Systems and methods to determine a location of a mobile device
US15/374,799Expired - Fee RelatedUS10129691B2 (en)2016-10-142016-12-09Systems and methods to determine a location of a mobile device
US16/168,538Expired - Fee RelatedUS10412539B2 (en)2016-10-142018-10-23Systems and methods to determine a location of a mobile device
US16/205,171Expired - Fee RelatedUS10481240B2 (en)2016-10-142018-11-29Systems and methods to determine a location of a mobile device
US16/599,029AbandonedUS20200041605A1 (en)2016-10-142019-10-10Systems and methods to determine a location of a mobile device

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US15/374,874Expired - Fee RelatedUS10178495B2 (en)2016-10-142016-12-09Systems and methods to determine a location of a mobile device
US15/374,799Expired - Fee RelatedUS10129691B2 (en)2016-10-142016-12-09Systems and methods to determine a location of a mobile device
US16/168,538Expired - Fee RelatedUS10412539B2 (en)2016-10-142018-10-23Systems and methods to determine a location of a mobile device
US16/205,171Expired - Fee RelatedUS10481240B2 (en)2016-10-142018-11-29Systems and methods to determine a location of a mobile device
US16/599,029AbandonedUS20200041605A1 (en)2016-10-142019-10-10Systems and methods to determine a location of a mobile device

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WO (1)WO2018071782A2 (en)

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US20180109921A1 (en)2018-04-19
US20200041605A1 (en)2020-02-06
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US20190098441A1 (en)2019-03-28
CA3039050A1 (en)2018-04-19
US10129691B2 (en)2018-11-13
EP3527016A2 (en)2019-08-21
US20180109910A1 (en)2018-04-19
US10178495B2 (en)2019-01-08
US10481240B2 (en)2019-11-19
US10412539B2 (en)2019-09-10
WO2018071782A2 (en)2018-04-19
US20190058965A1 (en)2019-02-21

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