Linear PID control technique for single wheel ABS (anti-lock braking system) of motorcycle

Harshal More, A. Digrase, A. Wayse
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引用次数: 10

Abstract

Automotive safety applications become more and more common in today's Cars, Trucks and also in Motorcycles. Vehicle stabilization systems such anti-lock braking systems (ABS) and electronic stability control are introduced since the late 1970's and have now become almost standard in every passenger car. ABS are mainly applied to two track vehicles, i.e. which have at least four wheels. For single-track (two-wheeled) vehicles such as motorcycles, because the realization of applications is more challenging due to the extended system dynamics and practical limitations such as space, weight, power requirements, etc. In this work elaborative study of motorcycle ABS system is given. The aim of this paper is to design linear PID controller and obtained desired braking performance in order to prevent wheel locking of considering motorcycle wheel dimensions. The performance of the proposed controller is verified in MATLAB/Simulink environment.
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摩托车单轮防抱死制动系统的线性PID控制技术
汽车安全应用在今天的轿车、卡车和摩托车上变得越来越普遍。自20世纪70年代末以来,防抱死制动系统(ABS)和电子稳定控制系统等车辆稳定系统被引入,现在几乎已成为每辆乘用车的标准配置。ABS主要应用于双轨车辆,即至少有四个车轮的车辆。对于摩托车等单轨(两轮)车辆,由于系统动力学的扩展和空间、重量、功率要求等实际限制,实现应用更具挑战性。本文对摩托车ABS系统进行了详细的研究。本文的目的是设计线性PID控制器,并获得理想的制动性能,以防止摩托车车轮尺寸的车轮锁死。在MATLAB/Simulink环境下验证了该控制器的性能。
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