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Stabilization of Magnetic Suspension System by Using Only a First-Order Reset Element without a Derivative Element

机译:仅使用无衍生元件的一阶复位元件稳定磁悬浮系统

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摘要

The stabilization of a magnetic suspension system is achieved by using a low-pass filter (LPF) with a nonlinear integrator without any other element. A proportional-derivative (PD) control is commonly used as the simplest method of stabilizing a magnetic suspension system. Meanwhile, a first-order reset element (FORE) was applied to improve transient characteristics. The original FORE was a first-order LPF with a nonlinear reset integrator element. A magnetic suspension system cannot be stabilized by a linear LPF, nor the original FORE. In this work, the reset conditions of the FORE were modified for magnetic suspension. This modified FORE succeeded in stabilizing a magnetic suspension system. The efficacy of the modified FORE was demonstrated by simulations and experiments. A single degree of freedom magnetic suspension system was used in the experiment.
机译:通过使用具有没有任何其他元件的非线性积分器的低通滤波器(LPF)来实现磁悬浮系统的稳定化。比例衍生物(PD)控制通常用作稳定磁悬浮系统的最简单方法。同时,应用了一阶重置元件(前)以改善瞬态特征。原始的前面是具有非线性复位积分器元件的一阶LPF。磁悬浮系统不能通过线性LPF稳定,也不能稳定。在这项工作中,修改了前面的复位条件以进行磁悬浮。这种改性前面成功稳定磁悬浮系统。通过模拟和实验证明了修饰前面的疗效。在实验中使用单一程度的自由磁悬浮系统。

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