Method for determining an actual level of a vehicle
US-2017066298-A1 · Mar 9, 2017 · US
US10132719B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-10132719-B2 |
| Application number | US-201514968663-A |
| Country | US |
| Kind code | B2 |
| Filing date | Dec 14, 2015 |
| Priority date | Dec 17, 2014 |
| Publication date | Nov 20, 2018 |
| Grant date | Nov 20, 2018 |
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A method and system for evaluating the reliability of data supplied by multi-function WFC sensors of tires of wheels of a vehicle for targeted applications, on the basis of the irregularities of the road, which use displacement data sent from the road handling adaptation equipment of the vehicle, enabling the variations in the road condition to be reflected. The system includes equipment for monitoring the wheel displacement data for adapting it to the variations of profile of the road on which it is traveling, in order to maintain a stable body position. The monitoring equipment is linked to the WFC sensors via a central processing unit which is capable of correlating data supplied by the WFC sensors and values of wheel displacement data supplied by the monitoring equipment for the purpose of weighting the values of at least one parameter obtained from the data delivered by the WFC sensors.
Opening claim text (preview).
The invention claimed is: 1. A method for estimating the reliability of measurements made periodically by multi-function Wheel Fitted Component (WFC) sensors of tires of wheels of a vehicle traveling on a road, the method comprising, in succession: a step of extracting, from a system for monitoring the vehicle in a given environment for the purpose of adapting a behavior of the vehicle to the given environment, periodic wheel displacement data on vehicle body displacement heights at the position of each wheel, indicating a state of the variations of a profile of the road on which the vehicle is traveling; a step of correlating the periodic wheel displacement data with the values of at least one parameter sensitive to the variations in the profile of the road for an application of the WFC sensors, the values being deduced from the measurements made by the WFC sensors on each wheel at the same instant; a step of using decision criteria to deduce a decision on the reliability of a given set of values of the at least one parameter deduced from the measurements of the WFC sensors based on the correlation between the displacement data and the values of the at least one parameter; and a step of performing one of (1) determining wheel location, (2) detecting one or more of overload and wear of the tires, (3) performing automatic training of the WFC sensors, and (4) monitoring positions of the WFC sensors using the given set of values of the at least one parameter and the decision on the reliability of the given set of values, wherein the number of periodic wheel displacement data is increased until a rate of global correlation between the periodic wheel displacement data and the values of said at least one parameter is at least equal to a given correlation threshold defining a reliability decision criterion. 2. A system for estimating the reliability of measurements made periodically by multi-function Wheel Fitted Component (WFC) sensors of tires of wheels of a vehicle capable of traveling on a road and transmitted in the form of digital signals to a central processing unit for the application of the method according to claim 1 , the system comprising: monitoring equipment configured to monitor the periodic wheel displacement data for adapting the system to the variations in the profile of the road on which the vehicle is traveling in order to maintain a stable body position by feedback control, the monitoring equipment being linked to the WFC sensors via the central processing unit which is configured to correlate the data supplied by the WFC sensors and the values of the periodic wheel displacement data supplied by the monitoring system to weight the values of the at least one parameter obtained from the measurements delivered by the WFC sensors to indicate the reliability of the measurements, wherein the monitoring equipment is selected from among a suspension control system of the vehicle, which indirectly supplies monitoring data on the state of the road, and a system of stereoscopic cameras, at least one radar system, and a laser sensor which directly supply data on the surface state of the road, and wherein the suspension control system is a hydroelectronic unit with an integrated computer configured to control a hydropneumatic suspension, the hydroelectronic unit receiving data from a steering wheel angle sensor and from sensors of the displacement of the vehicle body to regulate the suspension flow rate and pressure and the body height. 3. The system for estimating the reliability of measurements as claimed in claim 2 , wherein the application of the WFC sensors is an angular location of the wheels, and the monitoring data on the state of the road supplied by the hydroelectronic unit of a hydropneumatic suspension monitoring system are correlated with acceleration data of the WFC sensors. 4. The method for estimating the reliability of measurements as claimed in claim 1 , wherein the application is the location of the WFC sensors based on a position of the wheels, and the parameter is a length of a footprint of the tires on the road, determined based on an acceleration signal. 5. The method for estimating the reliability of measurements as claimed in claim 1 , wherein the correlation relates to the inverse variations between the periodic wheel displacement data and the corresponding values of tire footprint length of the corresponding tire. 6. The method for estimating the reliability of measurements as claimed in claim 1 , wherein a rolling average of the periodic wheel displacement data is determined, and wherein the wheel displacement data relate to the variations in the rolling average of the periodic wheel displacement data. 7. A method for estimating the reliability of measurements made periodically by multi-function Wheel Fitted Component (WFC) sensors of tires of wheels of a vehicle traveling on a road, the method comprising, in succession: a step of extracting, from a system for monitoring the vehicle in a given environment for the purpose of adapting a behavior of the vehicle to the given environment, periodic wheel displacement data on vehicle body displacement heights at the position of each wheel, indicating a state of the variations of the profile of the road on which the vehicle is traveling; a step of correlating the periodic wheel displacement data with the values of at least one parameter sensitive to the variations in a profile of the road for an application of the WFC sensors, the values being deduced from the measurements made by the WFC sensors on each wheel at the same instant; a step of using decision criteria to deduce a decision on the reliability of a given set of values of the parameter deduced from the measurements of the WFC sensors based on the correlation between the displacement data and the values of the parameter; and a step of performing one of (1) determining wheel location, (2) detecting one or more of overload and wear of the tires, (3) performing automatic training of the WFC sensors, and (4) monitoring positions of the WFC sensors using the given set of values of the parameter and the decision on the reliability of the given set of values, wherein the application is the location of the WFC sensors based on the position of the wheels, and the parameter is a length of a footprint of the tires on the road, determined based on an acceleration signal. 8. The method for estimating the reliability of measurements as claimed in claim 7 , wherein, a radial acceleration being detected by the WFC sensor, the variations in footprint or the presence of noise are directly detected by the WFC sensor. 9. A method for estimating the reliability of measurements made periodically by multi-function Wheel Fitted Component (WFC) sensors of tires of wheels of a vehicle traveling on a road, the method comprising, in succession: a step of extracting, from a system for monitoring the vehicle in a given environment for the purpose of adapting a behavior of the vehicle to the given environment, periodic wheel displacement data on vehicle body displacement heights at the position of each wheel, indicating a state of the variations of the profile of the road on which the vehicle is traveling; a step of correlating the periodic wheel displacement data with the values of at least one parameter sensitive to the variations in a profile of the road for an application of the WFC sensors, the values being deduced from the measurements made by the WFC sensors on each wheel at the same instant; a step of using decision criteria to deduce a decision on the reliability of a given set of values of the parameter deduced from the measurements of the WFC sensors based on the correlation between the displacement data and the values of the
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