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Development of control algorithm for ABS-suspension integration to reduce rotational acceleration oscillations of wheel

机译:ABS悬架集成控制算法的开发,减少轮旋转加速度振荡的

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摘要

In this study, we aimed to obtain smoother wheel rotational acceleration during braking with an activated anti-lock brake system (ABS). This produces effective and easily controlled rotational acceleration of a wheel by an ABS control unit. For this, the wheel load is changed by considering the interaction between the brake pressure change rates and rotational acceleration of the wheel. This is provided by means of the control strategy developed in this study. The rules of the control strategy are based on ABS test results. These tests are conducted with soft, medium-hard and hard dampers on wet and slippery road surfaces. Therefore, the control strategy changes the wheel load by setting the damper stage according to agreement between brake pressure and wheel rotational acceleration. Here, the control strategy constantly applies the damping force of the damper providing the shortest braking distance under wet or slippery road conditions. All results show that the control strategy considerably improves wheel rotational acceleration oscillations during braking with an activated ABS.
机译:在这项研究中,我们旨在通过激活的防锁制动系统(ABS)制动期间获得更光滑的车轮旋转加速度。这产生了通过ABS控制单元的有效且容易地控制滚轮的旋转加速度。为此,通过考虑制动压力变化率和轮的旋转加速度之间的相互作用来改变车轮载荷。这是通过本研究开发的控制策略提供的。控制策略的规则基于ABS测试结果。这些测试在湿滑的道路表面上用软,中硬和硬阻尼器进行。因此,控制策略根据制动压力和车轮旋转加速度之间的协议设置阻尼阶段,改变车轮负荷。这里,控制策略不断施加阻尼器的阻尼力,在潮湿或滑动的道路状况下提供最短的制动距离。所有结果表明,控制策略在用活化的ABS制动过程中大大改善了车轮旋转加速度振荡。

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