METHOD FOR DETECTING WHEEL IMBALANCES IN A VEHICLE
20180038761 ยท 2018-02-08
Inventors
Cpc classification
G01M1/28
PHYSICS
International classification
Abstract
In a method for detecting wheel imbalances in a vehicle, the profile of the driving state variable is ascertained by sensor over a speed range of the vehicle; a frequency analysis is performed; and a resonance step-up is indicative of a wheel imbalance.
Claims
1-11. (canceled)
12. A method for detecting wheel imbalances in a vehicle, the method comprising: ascertaining a driving state variable by a sensor over a speed range of the vehicle; and performing a frequency analysis of the profile of the driving state variable; wherein a resonance step-up is indicative of a wheel imbalance.
13. The method of claim 12, wherein the wheel-speed profile of at least one wheel is ascertained by sensor as a driving state variable and evaluated by the frequency analysis.
14. The method of claim 13, wherein the wheel-speed profile is determined from a sensor system of an electronic stability program in the vehicle.
15. The method of claim 12, wherein a warning signal is generated if the resonance step-up exceeds a limiting value.
16. The method of claim 15, wherein the warning signal is signaled in the vehicle.
17. The method of claim 15, wherein the warning signal is wirelessly transmitted from the vehicle to a reception point outside of the vehicle.
18. The method of claim 17, wherein the warning signal is transmitted to the reception point via an external device that is connected in the vehicle.
19. The method of claim 12, wherein signals from at least one further sensor are evaluated to determine the imbalance.
20. The method of claim 12, wherein the frequency analysis is only performed if the vehicle speed reaches a speed-limiting value.
21. A control unit for detecting wheel imbalances in a vehicle, comprising: a control device configured to perform the following: ascertaining a driving state variable by a sensor over a speed range of the vehicle; and performing a frequency analysis of the profile of the driving state variable; wherein a resonance step-up is indicative of a wheel imbalance.
22. A vehicle, comprising: at least one wheel-speed sensor; and a control unit for detecting wheel imbalances in a vehicle, including a control device configured to perform the following: ascertaining a driving state variable by a sensor over a speed range of the vehicle; and performing a frequency analysis of the profile of the driving state variable; wherein a resonance step-up is indicative of a wheel imbalance.
23. The method of claim 15, wherein the warning signal is wirelessly transmitted from the vehicle to a reception point outside of the vehicle to a repair shop.
24. The method of claim 17, wherein the warning signal is transmitted to the reception point via an external device, which is a smart phone, that is connected in the vehicle.
25. The method of claim 12, wherein signals, which are vehicle accelerations, from at least one further sensor are evaluated to determine the imbalance.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0019]
[0020]
[0021]
DETAILED DESCRIPTION
[0022] The abstract system for a vehicle 1 as shown in
[0023] Vehicle 1 has a sensor system having a wheel-speed sensor 6 for ascertaining the speeds of wheel 4. The sensor system is part of an electronic stability program (ESP) in the vehicle and, in addition to wheel-speed sensor 6, may include further sensors for ascertaining the longitudinal, transversal and/or vertical dynamics of the vehicle. However, the sensor system may also be configured independently of an electronic stability program. A wheel-speed sensor 6 is advantageously associated with each wheel 4 of the vehicle.
[0024]
[0025] Plotted in the diagram in accordance with
[0026] By considering limiting value E.sub.L, it is ensured that only a significant resonance step-up indicates an imbalance. If, on the other hand, the profiles lie below limiting value E.sub.L, then either no imbalance or an acceptable imbalance is assumed that does not adversely affect the ride comfort or the driving safety.
[0027] The block diagram according to
[0028] The signals from the sensors are fed to various units and systems 8 in the vehicle; inter alia, to the control unit or control device 8c of an electronic stability program. The ascertained signals may be analyzed in the control unit or control device and be subject to a frequency analysis to detect wheel imbalances in accordance with
[0029] Additionally or alternatively, the warning signal may be wirelessly transmitted to an external reception point, for example, to a repair shop. The transmission is carried out either directly via communication device 9 or via an external device 10, such as a smart phone, for example, that is connected to communication device 9 or that communicates wirelessly with the same.