Systems and methods for low-power location determination using terrestrial signals

US10470129B2 · US · B2

Patent metadata
FieldValue
Publication numberUS-10470129-B2
Application numberUS-201816220873-A
CountryUS
Kind codeB2
Filing dateDec 14, 2018
Priority dateApr 25, 2016
Publication dateNov 5, 2019
Grant dateNov 5, 2019

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  1. Title

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  2. Abstract

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  3. Assignees and inventors

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  4. Key dates

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  5. First independent claim

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  7. Citations and related patents

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Abstract

Official abstract text for this publication.

Reducing power consumption of a receiver in association with estimating the receiver's position using ranging signals. Systems and methods may determine power reduction strategy information, identify a power reduction strategy using the determined power reduction strategy information, and place one or more modules of the receiver into a reduced power state using the identified power reduction strategy. The power reduction strategy may result in powering off different circuitry of the receiver at different times, and under different circumstances.

First claim

Opening claim text (preview).

The invention claimed is: 1. A method for reducing power consumption of a receiver in association with estimating a position of the receiver using terrestrial signals, the method comprising: determining a set of terrestrial transmitters from which the receiver has received signals, wherein each of the transmitters in the set of transmitters transmitted a respective signal using a different TDMA transmission time slot; selecting, from the set of transmitters, a first subset of transmitters that (i) includes at least a threshold minimum number of transmitters and (ii) does not include all of the transmitters in the set of transmitters; determining, using a processor, that the receiver has not moved since the first subset of transmitters was selected; after determining that the receiver has not moved since the first subset of transmitters was selected, placing or keeping a first set of one or more modules of the receiver in a reduced power state during transmission time slots that are not used by any transmitter of the first subset of transmitters; determining that the receiver moved while the first set of one or more modules of the receiver were in the reduced power state during transmission time slots that are not used by any transmitter of the first subset of transmitters; and after determining that the receiver moved while the first set of one or more modules of the receiver were in the reduced power state, removing the first set of one or more modules of the receiver from the reduced power state during transmission time slots that are not used by any transmitter of the first subset of transmitters, wherein signals of the first subset of transmitters are processed when the first set of one or more modules of the receiver are in the reduced power state, wherein signals of transmitters from the set of transmitters that are not included in the first subset of transmitters are not processed when the first set of one or more modules of the receiver are in the reduced power state, and wherein signals of the transmitters from the set of transmitters that are not included in the first subset of transmitters are processed when the first set of one or more modules of the receiver are not in the reduced power state. 2. The method of claim 1 , wherein the method comprises: after determining that the receiver moved while the first set of one or more modules of the receiver were in the reduced power state, selecting, from the set of transmitters, a second subset of transmitters that (i) includes at least the threshold minimum number of transmitters and (ii) does not include all of the transmitters in the set of transmitters; determining that the receiver has not moved since the second subset of transmitters was selected; and after determining that the receiver has not moved since the second subset of transmitters was selected, placing or keeping a second set of one or more modules of the receiver in an additional reduced power state during transmission time slots that are not used by any transmitter of the second subset of transmitters. 3. The method of claim 2 , wherein the method comprises: determining that the receiver moved while the second set of one or more modules of the receiver were in the additional reduced power state during transmission time slots that are not used by any transmitter of the second subset of transmitters; and after determining that the receiver moved while the second set of one or more modules of the receiver were in the additional reduced power state, removing the second set of one or more modules of the receiver from the additional reduced power state during transmission time slots that are not used by any transmitter of the second subset of transmitters. 4. The method of claim 3 , wherein the first and second sets of one or more modules include the same one or more modules, wherein the first subset of transmitters includes at least one transmitter from the set of transmitters that is not included in the second subset of transmitters, and wherein the second subset of transmitters includes at least one transmitter from the set of transmitters that is not included in the first subset of transmitters. 5. The method of claim 3 , wherein signals of the second subset of transmitters are processed when the second set of one or more modules of the receiver are in the additional reduced power state, wherein signals of transmitters from the set of transmitters that are not included in the second set of transmitters are not processed when the second set of one or more modules of the receiver are in the additional reduced power state, and wherein signals of the transmitters from the set of transmitters that are not included in the second set of transmitters are processed when the second set of one or more modules of the receiver are not in the additional reduced power state. 6. The method of claim 1 , wherein the threshold minimum number of transmitters is four transmitters. 7. The method of claim 1 , wherein the transmission time slots that are not used by any transmitter of the first subset of transmitters are not contiguous. 8. The method of claim 1 , wherein the first set of one or more modules of the receiver are placed or kept in the reduced power state by clock gating, power gating, or by turning off power to the one or more modules. 9. A system that includes one or more machines that are operable to perform a method for reducing power consumption of a receiver in association with estimating a position of the receiver using terrestrial signals, the method comprising: determining a set of terrestrial transmitters from which the receiver has received signals, wherein each of the transmitters in the set of transmitters transmitted a respective signal using a different TDMA transmission time slot; selecting, from the set of transmitters, a first subset of transmitters that (i) includes at least a threshold minimum number of transmitters and (ii) does not include all of the transmitters in the set of transmitters; determining, using a processor, that the receiver has not moved since the first subset of transmitters was selected; after determining that the receiver has not moved since the first subset of transmitters was selected, placing or keeping a first set of one or more modules of the receiver in a reduced power state during transmission time slots that are not used by any transmitter of the first subset of transmitters; determining that the receiver moved while the first set of one or more modules of the receiver were in the reduced power state during transmission time slots that are not used by any transmitter of the first subset of transmitters; and after determining that the receiver moved while the first set of one or more modules of the receiver were in the reduced power state, removing the first set of one or more modules of the receiver from the reduced power state during transmission time slots that are not used by any transmitter of the first subset of transmitters, wherein signals of the first subset of transmitters are processed when the first set of one or more modules of the receiver are in the reduced power state, wherein signals of transmitters from the set of transmitters that are not included in the first subset of transmitters are not processed when the first set of one or more modules of the receiver are in the reduced power state, and wherein signals of the transmitters from the set of transmitters that are not included in the first subset of transmitters are processed when the first set of one or more modules of the receiver are not in the reduced power state. 10. One or more non-transitory machine-readable media embodying program instructions that, when executed by on

Assignees

Inventors

Classifications

  • Determining absolute distances from a plurality of spaced points of known location · CPC title

  • according to signal strength · CPC title

  • Assistance data, e.g. base station almanac · CPC title

  • detecting a user operation or a tactile contact or a motion of the device · CPC title

  • using time-division multiple access [TDMA] (H04B7/2615, H04B7/2618 take precedence) · CPC title

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What does patent US10470129B2 cover?
Reducing power consumption of a receiver in association with estimating the receiver's position using ranging signals. Systems and methods may determine power reduction strategy information, identify a power reduction strategy using the determined power reduction strategy information, and place one or more modules of the receiver into a reduced power state using the identified power reduction s…
Who is the assignee on this patent?
Nextnav Llc
What technology area does this patent fall under?
Primary CPC classification H04W52/0245. Mapped technology areas include Electricity.
When was this patent published?
Publication date Tue Nov 05 2019 00:00:00 GMT+0000 (Coordinated Universal Time) (B2). Legal status and post-grant events are not shown on this page.
What related patents are in patentsdb?
We list 8 related publications on this page (citations in our corpus or others sharing the same primary CPC).