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Performance enhancement of the vector control based Permanent Magnet Synchronous Motor drive using hybrid PI-Fuzzy logic controller

机译:使用混合PI-Fuzzy逻辑控制器增强基于矢量控制的永磁同步电动机的性能

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Vector control principle makes the analysis and control of Permanent Magnet Synchronous Motor (PMSM) drives system simpler and provides better dynamic response. This paper manifest a simulation for speed control and improvement in the performance of a closed loop vector controlled Interior permanent magnet Synchronous Motor (IPMSM) drive which employ two loops for better speed tracking along with provides reduced torque ripple and fast dynamic response during dynamic as well as steady state conditions by controlling the torque component of current. The outer loop employing hybrid PI- Fuzzy logic controller (PI-FLC) with their superior functions designed for effective speed control under dynamic condition, while inner loop as adaptive hysteresis current controller designed to reduce the torque ripple. The complete proposed model is implemented and tested in the Matlab/Simulink environment and a performance of proposed method is compared with conventional PI and fuzzy logic controller. Comparing with the PI and FLC, the FLC-PI method has superior performance.
机译:矢量控制原理使永磁同步电动机(PMSM)驱动系统的分析和控制更加简单,并提供了更好的动态响应。本文展示了一种用于速度控制的仿真,并改善了闭环矢量控制的内部永磁同步电动机(IPMSM)驱动器的性能,该驱动器采用两个环路以实现更好的速度跟踪,并在动态过程中还降低了转矩脉动并实现了快速动态响应通过控制电流的转矩分量将其作为稳态条件。外环采用混合PI-Fuzzy逻辑控制器(PI-FLC),其卓越的功能旨在在动态条件下进行有效的速度控制,而内环则作为自适应磁滞电流控制器,旨在减少转矩波动。在Matlab / Simulink环境中实现并测试了完整的模型,并将该方法的性能与常规PI和模糊逻辑控制器进行了比较。与PI和FLC相比,FLC-PI方法具有优越的性能。

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