Detecting signal modulation for motion detection

US9524628B1 · US · B1

Patent metadata
FieldValue
Publication numberUS-9524628-B1
Application numberUS-201615228418-A
CountryUS
Kind codeB1
Filing dateAug 4, 2016
Priority dateAug 4, 2016
Publication dateDec 20, 2016
Grant dateDec 20, 2016

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Abstract

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In a general aspect, motion is detected based on wireless signals. In some aspects, a modulation type of a first signal is identified at a motion detector device. The first signal is based on a wireless signal transmitted through a space by a transmitter device and received by the motion detector device. A demodulator at the motion detector device generates a second signal from the first signal by demodulating the first signal according to the identified modulation type. A modulator at the motion detector device generates a third signal from the second signal by modulating the second signal according to the identified modulation type. A channel response is generated based on the first signal and the third signal. The channel response is used to detect motion of an object in the space.

First claim

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What is claimed is: 1. A motion detection method comprising: identifying a modulation type of a first signal at a motion detector device, the first signal being based on a wireless signal transmitted through a space by a transmitter device and received by the motion detector device; by operation of a demodulator at the motion detector device, generating a second signal from the first signal, the second signal being generated by demodulating the first signal according to the identified modulation type; by operation of a modulator at the motion detector device, generating a third signal from the second signal, the third signal being generated by modulating the second signal according to the identified modulation type; determining a channel response based on the first signal and the third signal; and using the channel response to detect motion of an object in the space. 2. The motion detection method of claim 1 , comprising: determining a first set of frequency components from the first signal; determining a second set of frequency components from the third signal; and by operation of an adaptive coefficient calculator at the motion detector device, determining the channel response based on the first and second sets of frequency components. 3. The motion detection method of claim 2 , comprising: determining a third set of frequency components by modifying the first set of frequency components; and determining error values from the first set of frequency components and the third set of frequency components; and by operation of the adaptive coefficient calculator, determining the channel response based on the error values. 4. The motion detection method of claim 1 , comprising: determining signal-to-noise ratios for frequency components of the first signal; selecting components of the channel response based on the signal-to-noise ratios; and using the selected components of the channel response to detect motion of the object in the space. 5. The motion detection method of claim 1 , comprising extracting an identifier of the transmitter device from the second signal. 6. The motion detection method of claim 5 , wherein the identifier comprises a media access control (MAC) address of the transmitter device. 7. The motion detection method of claim 1 , wherein the transmitter device comprises a first transmitter device, the wireless signal comprises a first wireless signal, the channel response comprises a first channel response, and the method comprises: determining a second channel response based on a second wireless signal, the second wireless signal transmitted through a space by a second transmitter device and received by the motion detector device; and determining a location of the object based on the first and second channel responses. 8. The motion detection method of claim 1 , wherein the wireless signal comprises a radio frequency signal transmitted by a wireless network device, and the first signal comprises a baseband signal produced by a radio subsystem at the motion detector device processing the radio frequency signal. 9. The motion detection method of claim 1 , wherein identifying the modulation type comprises identifying a first modulation type from a plurality of distinct modulation types. 10. The motion detection method of claim 9 , wherein the plurality of distinct modulation types comprises orthogonal frequency-division multiplexing (OFDM) and direct-sequence spread spectrum (DSSS). 11. The motion detection method of claim 1 , wherein the wireless signal comprises a first wireless signal, the channel response comprises a first channel response, and the method comprises: by operation of the demodulator, generating a fifth signal from a fourth signal, the fourth signal based on a second wireless signal transmitted through the space by the transmitter device and received by the motion detector device, the fifth signal generated by demodulating the fourth signal; by operation of the modulator, generating a sixth signal from the fifth signal, the sixth signal generated by modulating the fifth signal; determining a second channel response based on the fourth signal and the sixth signal; and detecting motion of the object in the space based on comparing the first and second channel responses. 12. The motion detection method of claim 1 , wherein the wireless signal comprises a header and a payload, and the modulation type is detected based on information in the header. 13. A device comprising: a modulation detector configured to identify a modulation type of a first signal, the first signal based on a wireless signal transmitted through a space by a transmitter device; a demodulator configured to receive the first signal and generate a second signal from the first signal, the second signal generated by demodulating the first signal according to the identified modulation type; a modulator configured to receive the second signal and generate a third signal from the second signal, the third signal generated by modulating the second signal according to the identified modulation type; processor circuitry configured to receive the first signal and the third signal and to: determine a channel response based on the first signal and the third signal; and detect motion of an object in the space based on the channel response. 14. The device of claim 13 , wherein the processor circuitry comprises: a first filter bank configured to determine a first set of frequency components from the first signal; a second filter bank configured to determine a second set of frequency components from the third signal. 15. The device of claim 14 , wherein the processor circuitry comprises: tunable filters configured to determine a third set of frequency components by modifying the second set of frequency components; error detectors configured to determine error values from the first set of frequency components and the third set of frequency components; and an adaptive coefficient calculator configured to determine the channel response based on the error values. 16. The device of claim 13 , wherein the processor circuitry is configured to: determine signal-to-noise ratios for frequency components of the first signal; select components of the channel response based on the signal-to-noise ratios; and use the selected components of the channel response to detect motion of the object in the space. 17. The device of claim 13 , wherein the demodulator is configured to extract a media access control (MAC) address of the transmitter device. 18. The device of claim 13 , wherein the transmitter device comprises a first transmitter device, the wireless signal comprises a first wireless signal, the channel response comprises a first channel response, and the processor circuitry is configured to: determine a second channel response based on a second wireless signal, the second wireless signal transmitted through a space by a second transmitter device; and determine a location of the object based on the first and second channel responses. 19. The device of claim 13 , further comprising a radio subsystem, wherein the wireless signal comprises a radio frequency signal transmitted by a wireless network device, and the first signal comprises a baseband signal produced by the radio subsystem processing the radio frequency signal. 20. The device of claim 13 , wherein identifying the modulation type comprises identifying a first modulation type from a plurality of distinct modulation types, the plurality of di

Assignees

Inventors

Classifications

  • Intrusion detection systems, i.e. where the body of an intruder causes the interference with the electromagnetic field · CPC title

  • arrangements for identifying the type of modulation · CPC title

  • Arrangements specific to the receiver only (equalisation H04L27/01) · CPC title

  • G08B13/187Primary

    by interference of a radiation field · CPC title

  • Estimation of channel variability, e.g. coherence bandwidth, coherence time, fading frequency · CPC title

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What does patent US9524628B1 cover?
In a general aspect, motion is detected based on wireless signals. In some aspects, a modulation type of a first signal is identified at a motion detector device. The first signal is based on a wireless signal transmitted through a space by a transmitter device and received by the motion detector device. A demodulator at the motion detector device generates a second signal from the first signal…
Who is the assignee on this patent?
Cognitive Systems Corp
What technology area does this patent fall under?
Primary CPC classification G08B13/2491. Mapped technology areas include Physics.
When was this patent published?
Publication date Tue Dec 20 2016 00:00:00 GMT+0000 (Coordinated Universal Time) (B1). Legal status and post-grant events are not shown on this page.
What related patents are in patentsdb?
We list 2 related publications on this page (citations in our corpus or others sharing the same primary CPC).