IP Library Granted Patent US 10,604,175
Granted Patent B2
US 10,604,175 · App. 15/717,204 · Granted Mar 31, 2020

Steering system with failsafe torque sensor communication

Inventors: Keyur R. Patel (Saginaw, MI); Anthony J. Champagne (Saginaw, MI); Tejas M. Varunjikar (Rochester Hills, MI)
Assignee: Steering Solutions IP Holding Corporation
B62D5/0484B62D5/049B62D5/0463B62D6/00B62D6/10B62D15/025
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Quick Facts
Patent No.
US 10,604,175
App. No.
15/717,204
Granted
Mar 31, 2020
Kind
B2
Abstract

Technical solutions are described for providing failsafe assist torque in steering systems. An example method includes determining, by a first controller, a first assist torque signal using a first set of torque sensor signals from a first sensor and a second set of torque sensor signals from a second sensor, the first sensor corresponding to the first controller, and the second sensor corresponding to a second controller. The method further includes determining, by the second controller, a second assist torque signal using the first and second sets of torque sensor signals. Further the method includes generating, by a motor, an assist torque using the first and second assist torque signals, and in response to the first controller receiving a diagnostic signal indicating a failure of the first torque sensor, determining by the first controller, the first assist torque signal using only the second set of torque sensor signals.

Claims (28)

1. A computer implemented method for an autonomous drive assist system to provide failsafe assist torque, the method comprising:

determining, by a first torque calculation module from a first controller, a first assist torque signal based on a first set of torque sensor signals from a first torque sensor and a second set of torque sensor signals from a second torque sensor, the first torque sensor corresponding to the first controller, and the second torque sensor corresponding to a second controller;

determining, by a second torque calculation module from the second controller, a second assist torque signal based on the first set of torque sensor signals from the first torque sensor and/or the second set of torque sensor signals from the second torque sensor;

generating, by a motor, an assist torque based on the first assist torque signal and the second assist torque signal; and

in response to the first torque calculation module receiving a diagnostic signal indicative of a failure of the first torque sensor, determining by the first torque calculation module, the first assist torque signal based only on the second set of torque sensor signals, wherein the first torque sensor sends the first set of torque sensor signals to the first controller and to the second controller in response to receiving a trigger signal from a first torque measurement driver peripheral of the first controller, wherein the first torque measurement driver peripheral receives the second set of torque signals via communication ports configured in receive-only mode and the first set of torque signals via communication ports configured in transmit-and-receive mode.

2. The computer implemented method of claim 1 , wherein the motor is a dual-wound motor generating the assist torque based on the first assist torque signal and the second assist torque signal.

3. A computer implemented method for an autonomous drive assist system to provide failsafe assist torque, the method comprising:

determining, by a first torque calculation module from a first controller, a first assist torque signal based on a first set of torque sensor signals from a first torque sensor and a second set of torque sensor signals from a second torque sensor, the first torque sensor corresponding to the first controller, and the second torque sensor corresponding to a second controller;

determining, by a second torque calculation module from the second controller, a second assist torque signal based on the first set of torque sensor signals from the first torque sensor and/or the second set of torque sensor signals from the second torque sensor;

generating, by a motor, an assist torque based on the first assist torque signal and the second assist torque signal; and

in response to the first torque calculation module receiving a diagnostic signal indicative of a failure of the first torque sensor, determining by the first torque calculation module, the first assist torque signal based only on the second set of torque sensor signals, wherein the first torque sensor sends the first set of torque sensor signals to the first controller and to the second controller in response to receiving a trigger signal from a first torque measurement driver peripheral of the first controller, wherein the first torque measurement driver peripheral triggers the first torque sensor at a triggering rate that is different from a sampling rate used by the torque calculation module.

4. The computer implemented method of claim 3 , wherein the triggering rate is faster than the sampling rate.

5. The computer implemented method of claim 3 , wherein the motor is a dual-wound motor generating the assist torque based on the first assist torque signal and the second assist torque signal.

6. A computer implemented method for an autonomous drive assist system to provide failsafe assist torque, the method comprising:

determining, by a first torque calculation module from a first controller, a first assist torque signal based on a first set of torque sensor signals from a first torque sensor and a second set of torque sensor signals from a second torque sensor, the first torque sensor corresponding to the first controller, and the second torque sensor corresponding to a second controller;

determining, by a second torque calculation module from the second controller, a second assist torque signal based on the first set of torque sensor signals from the first torque sensor and/or the second set of torque sensor signals from the second torque sensor;

generating, by a motor, an assist torque based on the first assist torque signal and the second assist torque signal; and

in response to the first torque calculation module receiving a diagnostic signal indicative of a failure of the first torque sensor, determining by the first torque calculation module, the first assist torque signal based only on the second set of torque sensor signals, wherein the second torque sensor sends the second set of torque sensor signals to the first controller and to the second controller in response to receiving a trigger signal from a second torque measurement driver peripheral of the second controller, wherein the second torque measurement driver peripheral receives the first set of torque signals via communication ports configured in receive-only mode.

7. The computer implemented method of claim 6 , wherein the motor is a dual-wound motor generating the assist torque based on the first assist torque signal and the second assist torque signal.

8. A computer implemented method for an autonomous drive assist system to provide failsafe assist torque, the method comprising:

determining, by a first torque calculation module from a first controller, a first assist torque signal based on a first set of torque sensor signals from a first torque sensor and a second set of torque sensor signals from a second torque sensor, the first torque sensor corresponding to the first controller, and the second torque sensor corresponding to a second controller;

determining, by a second torque calculation module from the second controller, a second assist torque signal based on the first set of torque sensor signals from the first torque sensor and/or the second set of torque sensor signals from the second torque sensor;

generating, by a motor, an assist torque based on the first assist torque signal and the second assist torque signal; and

in response to the first torque calculation module receiving a diagnostic signal indicative of a failure of the first torque sensor, determining by the first torque calculation module, the first assist torque signal based only on the second set of torque sensor signals, wherein determining the first assist torque signal based on the first set of torque sensor signals and the second set of torque sensor signals further comprising:

computing a first torque signal component based on the first set of torque sensor signals;

computing a second torque signal component based on the second set of torque sensor signals; and

determining the first assist torque signal as a weighted average of the first torque signal component and the second torque signal component using a predetermined weight factor.

9. The computer implemented method of claim 8 , wherein the motor is a dual-wound motor generating the assist torque based on the first assist torque signal and the second assist torque signal.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 7, 2018
From: PATEL, KEYUR R.; CHAMPAGNE, ANTHONY J.; VARUNJIKAR, TEJAS M.
To: STEERING SOLUTIONS IP HOLDING CORPORATION
Reel/Frame 044854/0070 →
Continuity (2)
Provisional Application 62400817 · Sep 28, 2016
Related Publication 20180086368A1 · Mar 29, 2018
Cited By (1)
US 12,485,960