IP Library Granted Patent US 11,052,902
Granted Patent B2
US 11,052,902 · App. 16/086,932 · Granted Jul 6, 2021

Method for determining the maximum force to be transmitted to the driving wheels of a vehicle provided with a hybrid power train

Inventors: Loic Le-Roy (Issy-les-Moulineaux, FR); Jean-Martin Ruel (Epinay-sur-Orge, FR)
Assignee: RENAULT s.a.s.
B60W20/30B60W20/15B60W30/188B60W30/1882B60W30/19B60W2510/244B60W2510/248B60W2520/10B60W2555/20B60W2710/0666B60W2710/1005B60W2720/106B60W2720/30Y02T10/40Y02T10/84
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Quick Facts
Patent No.
US 11,052,902
App. No.
16/086,932
Granted
Jul 6, 2021
Kind
B2
Abstract

A method determines a force to be transmitted to driving wheels of a vehicle provided with a hybrid power train with several gear ratios and a traction battery. The method includes determining, over all of a speed range that the vehicle is capable of achieving, a maximum force that the power train is theoretically capable of transmitting to the wheels in predetermined nominal conditions of charge of the traction battery and/or of outside temperature and/or of atmospheric pressure; and determining, over all of the speed range, a drivability force that the power train is capable of transmitting to the wheels. The drivability force confirms that whatever the value of the speed of the vehicle, the drivability force is less than or equal to the maximum force; and the drivability force evolves within the speed range without exhibiting an inflexion point at values of the speed requiring a gear change.

Claims (18)

1. A method for determining a force to be transmitted to driving wheels of a vehicle provided with a hybrid power train with several gear ratios and a traction battery, the method comprising:

determining, over all of a speed range that the vehicle is capable of achieving, a maximum force that the power train is theoretically capable of transmitting to the wheels in predetermined nominal conditions of charge of the traction battery and/or of outside temperature and/or of atmospheric pressure;

determining, over all of the speed range that the vehicle is capable of achieving, a drivability force that the power train is capable of transmitting to the wheels, said drivability force confirming that:

whatever the value of the speed of the vehicle, the drivability force is less than or equal to the maximum force; and

the drivability force evolves within the speed range without exhibiting an inflexion point at values of the speed requiring a gear change,

wherein, in case of a request for maximum acceleration from the driver at a given speed, the method further comprises:

computing a degradation coefficient, said coefficient being equal to a ratio between:

a maximum force that the power train is really capable of transmitting to the wheels at the given speed at a current instant, given the real conditions of charge of the traction battery and/or of outside temperature and/or atmospheric pressure, and;

the maximum force that the power train is theoretically capable of transmitting to the wheels at the given speed in the predetermined nominal conditions; and

computing a corrected drivability force to be actually transmitted to the wheels, said corrected force being equal to the product of the degradation coefficient by the theoretical maximum force at the given speed,

wherein the computing the degradation coefficient comprises:

comparing the degradation constant to a previously stored degradation constant stored in a memory; and

when the degradation constant is greater than or equal to the previously stored degradation constant, incrementing the previously stored degradation constant by an offset that is dependent upon the current instant.

2. The method as claimed in claim 1 , wherein the determining the maximum force includes determining an upper envelope of curves representing, for each of the gear ratios, a trend of the force transmitted to the wheels as a function of the speed of the vehicle.

3. The method as claimed in claim 2 , wherein the determining the drivability force includes determining an upwardly concave curve passing through at least one inflexion point of the upper envelope.

4. A non-transitory computer readable medium storing a processing program that, when executed by a computer, causes the computer to execute the method as claimed in claim 1 .

5. A hybrid vehicle, comprising:

the non-transitory computer readable medium as claimed in claim 4 .

Assignments (4)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 31, 2024
From: RENAULT S.A.S.
To: NEW H POWERTRAIN HOLDING, S.L.U.
Reel/Frame 067099/0560 →
CHANGE OF ADDRESS Recorded Mar 8, 2024
From: RENAULT S.A.S.
To: RENAULT S.A.S.
Reel/Frame 066761/0907 →
CHANGE OF NAME AND ADDRESS Recorded Feb 28, 2024
From: RENAULT S.A.S.
To: RENAULT S.A.S.
Reel/Frame 066700/0545 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 5, 2018
From: LE-ROY, LOIC; RUEL, JEAN-MARTIN
To: RENAULT S.A.S.
Reel/Frame 047081/0133 →
Priority Claims (1)
FR 1652411 · Mar 21, 2016 · national
Continuity (1)
Related Publication 20190193718A1 · Jun 27, 2019