首页> 外文期刊>Journal of vibration and control: JVC >Low Power Consumption Nonlinear Control with H_∞ Compensator for a Zero-Bias Flywheel AMB System
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Low Power Consumption Nonlinear Control with H_∞ Compensator for a Zero-Bias Flywheel AMB System

机译:零偏置飞轮AMB系统的H_∞补偿器低功耗非线性控制

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摘要

A nonlinear control approach based on a control current switching rule is studied experimentally for an energy storage flywheel active magnetic bearing (AMB) system. In the proposed control, only one electromagnet in each axis of the AMB has a current flow at any given time, depending on the rotor displacement. This results in a power consumption that is lower than a linear control employing a bias current. The equation of motion for the rigid rotor-AMB system is transformed to have a decentralized structure for the control design. To compute nonlinear control currents, an H_∞ compensator is designed for each axis of the AMB. The proposed approach is experimentally verified using a high-speed digital signal processor.
机译:针对储能飞轮主动磁轴承(AMB)系统,实验研究了一种基于控制电流切换规则的非线性控制方法。在建议的控制中,取决于转子排量,在任何给定时间,AMB的每个轴上只有一个电磁体具有电流流动。这导致功耗低于采用偏置电流的线性控制。刚性转子-AMB系统的运动方程式经过变换,具有分散的结构,可用于控制设计。为了计算非线性控制电流,为AMB的每个轴设计了H_∞补偿器。使用高速数字信号处理器对提出的方法进行了实验验证。

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