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Controlling Chaos in Permanent Magnet Synchronous Motors by Cascade Adaptive Approach

机译:通过级联自适应方法控制永磁同步电动机的混沌

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Chaotic phenomena in permanent magnet synchronous motors (PMSM) can be observed when parameters in PMSM are in a certain range. In general, chaos will degrade the performance of PMSM or even collapse the system. In order to suppress the chaos in PMSM, cascade adaptive control is utilized in this paper. Faithful model of PMSM is not necessarily required by using adaptive control based on dynamic compensation mechanism. By choosing appropriate controller parameters, chaos will be eliminated and the response speed can be tunable. Numerical simulation results for nominal case and parameter perturbation case are given out to confirm the cascade adaptive control is valid in chaos control of PMSM.
机译:当PMSM中的参数处于一定范围时,可以观察到永磁同步电动机(PMSM)中的混沌现象。通常,混乱将降低PMSM的性能甚至会崩溃系统。为了抑制PMSM中的混沌,本文利用了级联自适应控制。通过基于动态补偿机制使用自适应控制,不一定需要忠实的PMSM模型。通过选择合适的控制器参数,将消除混乱,可以调谐响应速度。向标称壳体和参数扰动外壳的数值模拟结果被发出以确认级联自适应控制在PMSM的混沌控制中是有效的。

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