Research on the Anti-Disturbance Control Method of Brake-by-Wire Unit for Electric Vehicles

Author:

Gong ,Qian ,Ge ,Wang

Abstract

In order to improve the braking performance of electric vehicles, a novel brake-by-wire actuator based on an electro-magnetic linear motor was designed and manufactured. For the purpose of braking force regulation accuracy and high robust performance, the state observer and the anti-disturbance controller were designed in this paper after describing the actuator structure, braking principle, and mathematical model. The simulation and experimental results showed that the brake actuator responded rapidly, since its response time was only 15 ms. Compared to traditional PID (Proportion Integration Differentiation) methods, the controller proposed in this paper is able to regulate the braking force more precisely and has better anti-disturbance performance, thus the braking process can be accurately controlled according to the driver’s demand. The vehicle simulation results showed that the braking distance and braking time were shortened by 12.19% and 15.54%, respectively compared with those of the conventional anti-lock brake system (ABS) in the same braking conditions.

Funder

Project of Science and Technology Research Program of Chongqing Education Commission of China

Publisher

MDPI AG

Subject

Automotive Engineering

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1. Sensorless optimal control of electronic wedge brake based on dynamic model and Kalman filter state multiple-estimation;Proceedings of the Institution of Mechanical Engineers, Part D: Journal of Automobile Engineering;2023-04-19

2. Optimized PID Controller Using Genetic Algorithm for Anti-lock Brake System;SAE Technical Paper Series;2023-04-11

3. A Review of Automobile Brake-by-Wire Control Technology;Processes;2023-03-24

4. A Gear Drive Brake-By-Wire Actuator;2022 6th CAA International Conference on Vehicular Control and Intelligence (CVCI);2022-10-28

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