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首页> 外文期刊>Mathematical Problems in Engineering >Rotation Modes Stability Analysis and Phase Compensation for Magnetically Suspended Flywheel Systems with Cross Feedback Controller and Time Delay
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Rotation Modes Stability Analysis and Phase Compensation for Magnetically Suspended Flywheel Systems with Cross Feedback Controller and Time Delay

机译:具有交叉反馈控制器和时滞的磁悬浮飞轮系统的旋转模式稳定性分析和相位补偿

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摘要

This paper analyzes the effects of time delay on the stability of the rotation modes for the magnetically suspended flywheel (MSFW) with strong gyroscopic effects. A multi-input multioutput system is converted into a single-input single-output control system with complex coefficient by variable reconstruction, and the stability equivalence of the systems before and after variable reconstruction is proven. For the rotation modes, the stability limits and corresponding vibration frequencies are found as a function of nondimensional magnetic stiffness and damping and nondimensional parameters of rotor speed and time delay. Additionally, the relationship between cross feedback control system stability and time delay is investigated. And an effective phase compensation method based on cross-channel is further presented. Simulation and experimental results are presented to demonstrate the correctness of the stability analysis method and the superiority of the phase compensation strategy.
机译:本文分析了陀螺效应强的磁悬浮飞轮(MSFW)的时延对旋转模式稳定性的影响。通过变量重构将多输入多输出系统转换为具有复杂系数的单输入单输出控制系统,证明了变量重构前后系统的稳定性等价。对于旋转模式,发现稳定性极限和相应的振动频率是无量纲的磁刚度,阻尼和转子速度和时间延迟的无量纲参数的函数。另外,研究了交叉反馈控制系统的稳定性和时延之间的关系。并提出了一种基于跨通道的有效相位补偿方法。仿真和实验结果表明了稳定性分析方法的正确性和相位补偿策略的优越性。

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  • 来源
    《Mathematical Problems in Engineering》 |2016年第3期|3783740.1-3783740.10|共10页
  • 作者单位

    Equipment Acad, Beijing 101416, Peoples R China;

    Equipment Acad, Beijing 101416, Peoples R China|Beijing Inst Special Electromech Technol, Beijing 100012, Peoples R China;

    Equipment Acad, Beijing 101416, Peoples R China;

    Equipment Acad, Beijing 101416, Peoples R China;

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