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Active suspension system based on linear switched reluctance actuator and control schemes

机译:基于线性开关磁阻执行器的主动悬架系统及控制方案

摘要

In this paper, an active suspension system utilizing a low-cost high-performance linear switched reluctance actuator with proportional-derivative (PD) control is presented. With the tracking differentiator (TD) calculating the displacement and its derivatives directly under the presence of noise, velocity and acceleration can be evaluated, and accurate position control can be achieved. Comparison is made between linear and nonlinear PD control methods in terms of various system parameters and road profiles. A nonlinear PD controller with better dynamic responses is evaluated and developed for real-time suspension application. The proposed PD control schemes are simulated, tested, and analyzed to prove its robustness and reliability. Finally, a quarter-car active suspension system prototype is built to demonstrate the effectiveness of the proposed control schemes with experiment results.
机译:在本文中,提出了一种主动悬挂系统,该系统利用具有比例微分(PD)控制的低成本高性能线性开关磁阻致动器。利用跟踪微分器(TD)在存在噪声的情况下直接计算位移及其导数,可以评估速度和加速度,并可以实现精确的位置控制。根据各种系统参数和道路轮廓,对线性和非线性PD控制方法进行了比较。评估并开发了具有更好动态响应的非线性PD控制器,用于实时悬架应用。对提出的局部放电控制方案进行了仿真,测试和分析,以证明其鲁棒性和可靠性。最后,构建了四分之一汽车主动悬架系统原型,以通过实验结果证明所提出的控制方案的有效性。

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