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Fuzzy self-adaptive PID control for the suspending subsystem of bearingless permanent magnet-type synchronous motors

机译:无轴承永磁同步电动机悬浮子系统的模糊自适应PID控制

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Practical operation of a bearingless permanent magnet-type synchronous motor (BPMSM) owes to stable suspension of the rotor. With the variation of operating conditions, conventional PID controller can't adjust its parameters, and the overshoot of the system response is big. Based on rotor flux orientation, a fuzzy self-adaptive PID controller was designed to control the suspending subsystem of a BPMSM. This controller can adjust the PID parameters on-line by fuzzy reasoning. The characteristics of dynamic tracking performance and steady-state precision of PID controller, together with strong robustness, good dynamic response and less overshoot of fuzzy controller are obtained. The simulation results show that this approach is effective in improving the static and dynamic performance of stable suspension of bearingless motors.
机译:无轴承永磁同步电动机(BPMSM)的实际运行归因于转子的稳定悬挂。随着工况的变化,传统的PID控制器无法调整其参数,并且系统响应的过冲很大。基于转子磁链方向,设计了模糊自适应PID控制器来控制BPMSM的悬浮子系统。该控制器可以通过模糊推理在线调整PID参数。获得了PID控制器动态跟踪性能和稳态精度的特点,鲁棒性强,动态响应好,模糊控制器的超调量小。仿真结果表明,该方法可有效提高无轴承电机稳定悬架的静态和动态性能。

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