Controlling The Performance of Anti-lock Braking System at Various Tracks and Vehicle Conditions

Ghani Amri Rabbani, A. Syahriar, Dwi Astharini
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Abstract

The anti-lock braking system (ABS) is a control system that allows the vehicle's wheels to slow down without locking, stabilizes the steering wheel during harsh braking, and reduces stopping distance. Using a complete motorbike model, computer simulation is used to analyze ABS performance. ABS is currently an integral feature of the automotive system that provides added safety. To address the issue of severe nonlinearity in ABS design, controllers such as PID and bang-bang controllers are trying to regulate the longitudinal slip of the wheels during braking are required. It also employs diverse road conditions and vehicle circumstances/configurations in this article. MATLAB and Simulink are used to create the results of the simulated comparison between various situations and settings.
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在不同轨道和车辆条件下控制防抱死制动系统的性能
防抱死制动系统(ABS)是一种控制系统,可以使车辆的车轮在不锁死的情况下减速,在猛烈制动时稳定方向盘,并缩短停车距离。采用完整的摩托车模型,通过计算机仿真对ABS性能进行了分析。ABS目前是汽车系统的一个组成部分,提供了额外的安全性。为了解决ABS设计中严重的非线性问题,需要PID和bang-bang控制器等控制器来调节制动过程中车轮的纵向滑移。在本文中,它还采用了不同的道路条件和车辆环境/配置。使用MATLAB和Simulink创建各种情况和设置之间的模拟比较结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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