IP Library Granted Patent US 10,780,892
Granted Patent B2
US 10,780,892 · App. 16/489,386 · Granted Sep 22, 2020

Method for determining the movement of a motor vehicle provided with a system for monitoring the pressure of a tire

Inventors: Sylvain Godet (Saint-Cezert, FR); Stéphane Billy (Grenade, FR)
Assignees: Continental Automotive France; Continental Automotive GmbH
B60W40/105B60C23/04B60C23/0477B60W40/10G01S11/10B60W2050/0057B60W2420/60B60W2530/20
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Quick Facts
Patent No.
US 10,780,892
App. No.
16/489,386
Granted
Sep 22, 2020
Kind
B2
Abstract

A method for determining the start of movement of a motor vehicle equipped with a system for monitoring tire pressure of a motor vehicle. Communication between the receiver and each pressure monitoring system emitter being subjected to a Doppler effect so that a periodic component is inserted by the emitter into the signal emitted to the receiver. The method includes: acquiring the intermediate-frequency signal before demodulation by a processor to extract data carried by the radiofrequency signal, determining the FFT of the IF signal, determining the average value of the FFT of the IF signal over a preset duration, and determining whether there is a frequency deviation by comparing the instantaneous value of the fast Fourier transform to the average value of the fast Fourier transform, if so, determining whether the emitter for monitoring the pressure of a tire is moving and that the vehicle is moving.

Claims (19)

1. A method for determining a start of movement of a motor vehicle equipped with at least one emitter for monitoring a pressure of a tire of the motor vehicle and with a receiver for monitoring the pressure of at least one tire, which is connected to an electronic control unit of the vehicle and able to communicate with the at least one emitter for monitoring the pressure, the method comprising:

subjecting the communication between the monitoring receiver and each emitter for monitoring the pressure to a Doppler effect so that a periodic component is inserted into a signal emitted, by the emitter, to the receiver,

the receiver comprising an intermediate filter being able to reconstruct an intermediate-frequency signal from the radiofrequency signal and from a reference signal,

demodulating the intermediate-frequency signal by a computing means with a view to extracting data carried by the radiofrequency signal,

acquiring the intermediate-frequency signal,

determining the fast Fourier transform of the intermediate-frequency signal,

determining an average value of the fast Fourier transform of the intermediate-frequency signal over a preset duration,

determining whether there is a frequency deviation by comparing the instantaneous value of the fast Fourier transform to the average value of the fast Fourier transform,

if such is the case, determining whether the absolute value of the amplitude of the deviation is higher than a threshold,

if such is the case, determining whether the deviation is periodic, and

if such is the case, determining that the frequency deviation corresponds to a periodic component inserted into the signal emitted by the emitter because of the Doppler effect, that the emitter for monitoring the pressure of a tire is moving and that the vehicle is moving.

2. The method as claimed in claim 1 , wherein, to determine whether there is a frequency deviation depending on the instantaneous value of the fast Fourier transform and the average value of the fast Fourier transform,

subtracting the instantaneous value of the fast Fourier transform from the average value of the fast Fourier transform, then it is determined whether the obtained signal is nonzero,

if such is the case, determining that a frequency deviation is present.

3. The method as claimed in claim 1 , wherein the intermediate-frequency signal is acquired when the emitter for monitoring the pressure of a tire is in a “low consumption” operating mode.

4. The method as claimed in claim 1 , wherein, when it is determined that the vehicle is moving, the operating mode of the emitter for monitoring the pressure of a tire is switched from a “low consumption” operating mode to a “driving” operating mode.

5. The method as claimed in claim 2 , wherein the intermediate-frequency signal is acquired when the emitter for monitoring the pressure of a tire is in a “low consumption” operating mode.

6. The method as claimed in claim 2 , wherein, when it is determined that the vehicle is moving, the operating mode of the emitter for monitoring the pressure of a tire is switched from a “low consumption” operating mode to a “driving” operating mode.

7. The method as claimed in claim 3 , wherein, when it is determined that the vehicle is moving, the operating mode of the emitter for monitoring the pressure of a tire is switched from a “low consumption” operating mode to a “driving” operating mode.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 15, 2025
From: CONTINENTAL AUTOMOTIVE GMBH; CONTINENTAL AUTOMOTIVE FRANCE S.A.S.
To: CONTINENTAL AUTOMOTIVE TECHNOLOGIES GMBH
Reel/Frame 071931/0711 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 11, 2019
From: BILLY, STÉPHANE; GODET, SYLVAIN
To: CONTINENTAL AUTOMOTIVE FRANCE; CONTINENTAL AUTOMOTIVE GMBH
Reel/Frame 051244/0724 →
Priority Claims (1)
FR 17 54550 · May 23, 2017 · national
Continuity (1)
Related Publication 20190375417A1 · Dec 12, 2019