Fault Tolerant Control and Classification for Longitudinal Vehicle Control

Author:

Song Bongsob1,Hedrick J. Karl1,Howell Adam1

Affiliation:

1. University of California, Berkeley, CA

Abstract

In this paper, a new method of analyzing for the performance loss caused by faults in the systems is presented, and applied to the design of a fault tolerant longitudinal controller for a transit bus. Based on the amount of performance loss measured by a quadratic function, fault impact assessment is developed for both single and multiple faults. More specifically, ellipsoidal approximation of the tracking error bounds via dynamic surface control (DSC) is obtained via convex optimization technique for the nonlinear closed-loop system. Relying on the fault impact to the closed loop system and its isolatability on a fault detection and diagnosis system, the fault classification is proposed to provide a switching logic in the framework of a switched hierarchical structure. Finally, simulation results of the fault tolerant controller and corresponding fault classification are shown for multiple multiplicative faults.

Publisher

ASME International

Subject

Computer Science Applications,Mechanical Engineering,Instrumentation,Information Systems,Control and Systems Engineering

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1. Two longitudinal fault tolerant control architectures for an autonomous vehicle;Mathematics and Computers in Simulation;2019-02

2. Sliding Mode Reconfigurable Fault Tolerant Control for Nonlinear Aircraft Systems;Journal of Aerospace Engineering;2015-05

3. Adaptive Actuator Failure and Structural Damage Compensation of NASA Generic Transport Model;Journal of Dynamic Systems, Measurement, and Control;2014-02-19

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