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Active Brake Judder Attenuation Using an Electromechanical Brake-by-Wire System

机译:使用线控机电制动系统的主动制动颤振衰减

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摘要

Brake judder is an undesirable phenomenon in passenger vehicles whereby disk thickness variations lead to brake torque variations (BTVs) during light braking events with a consequence of reduced braking performance and driver satisfaction. Most solutions involve passive approaches; however, in this study, a novel active brake judder attenuation strategy utilizing the capabilities of a prototype electromechanical brake (EMB) is proposed. Two attenuation algorithms with different sensor requirements are presented, where compensating clamp force commands are generated to cancel the judder causing BTV arises during light braking. The first approach is founded on the linear parameter-varying (LPV) control structure, which is designed using the output regulation theory and scheduled using wheel angular speed and acceleration. The second approach examines the adaptive feedforward compensation, where the compensator is scheduled using wheel angular position, speed, and acceleration. Experimental investigations showed favorable results for the LPV compensator, albeit with high sampling rate requirements. On the other hand, the adaptive compensator demonstrated lower sampling rate requirements with better BTV attenuation, but required wheel position measurements. These results highlight the applicability of EMB in judder reduction and the advantage of having wheel position measurements.
机译:制动颤抖是乘用车中不希望出现的现象,在轻度制动过程中,盘厚度的变化会导致制动扭矩变化(BTV),从而导致制动性能和驾驶员满意度降低。大多数解决方案都涉及被动方法。然而,在这项研究中,提出了一种利用原型机电制动器(EMB)的功能的新型主动制动颤振衰减策略。提出了两种具有不同传感器要求的衰减算法,其中生成补偿夹紧力命令以消除在轻制动期间引起BTV的抖动。第一种方法基于线性可变参数(LPV)控制结构,该结构使用输出调节理论进行设计并使用车轮角速度和加速度进行调度。第二种方法检查自适应前馈补偿,其中使用车轮角位置,速度和加速度来安排补偿器。实验研究表明,尽管要求很高的采样率,但LPV补偿器还是取得了令人满意的结果。另一方面,自适应补偿器显示出较低的采样率要求和更好的BTV衰减,但需要进行车轮位置测量。这些结果突出了EMB在减少抖动方面的适用性以及进行车轮位置测量的优势。

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