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首页> 外文期刊>Industry Applications, IEEE Transactions on >An Adaptive-Filter-Based Torque-Ripple Minimization of a Fuzzy-Logic Controller for Speed Control of IPM Motor Drives
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An Adaptive-Filter-Based Torque-Ripple Minimization of a Fuzzy-Logic Controller for Speed Control of IPM Motor Drives

机译:IPM电机驱动器速度控制的基于模糊逻辑的自适应滤波器转矩脉动最小化

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摘要

This paper presents an adaptive-filter-based torque-ripple minimization (TRM) of a fuzzy-logic controller (FLC) for speed control of an interior permanent magnet (IPM) motor drive. A simple and effective first-order digital infinite impulse response filter is utilized to reduce the torque ripples introduced by the FLC. The gain of the filter is adapted online based on the magnitude of the torque ripple. The optimal position of the filter in the complete drive is also determined for effective TRM. The various sources of torque pulsations in a practical electric-machine drive are described. The main causes of the torque ripple in an FLC are also explained. A simulation model for closed vector control of an FLC-based IPM motor drive incorporating the proposed TRM technique is developed in Matlab/Simulink. The complete drive is also experimentally implemented using digital signal processor board DS1102 for a laboratory 1-hp IPM motor. The effectiveness of the proposed technique is investigated, both in simulation and experiment, at different operating conditions. It is found that the performance of the FLC-based IPM drive is improved significantly with the proposed TRM technique.
机译:本文提出了一种基于自适应滤波器的转矩脉动最小化(TRM)的模糊逻辑控制器(FLC),用于内部永磁体(IPM)电动机驱动器的速度控制。一个简单有效的一阶数字无限脉冲响应滤波器用于减少FLC引入的转矩脉动。根据转矩脉动的大小在线调整滤波器的增益。为了有效的TRM,还确定了滤波器在整个驱动器中的最佳位置。描述了实际电机驱动器中扭矩脉动的各种来源。还说明了FLC中扭矩波动的主要原因。在Matlab / Simulink中开发了一种基于FLC的IPM电机驱动器的封闭矢量控制的仿真模型,该模型结合了拟议的TRM技术。完整的驱动器还可以通过数字信号处理器板DS1102在实验中用于实验室1 hp IPM电机来实现。在不同的操作条件下,在仿真和实验中都研究了所提出技术的有效性。发现使用提出的TRM技术可以显着改善基于FLC的IPM驱动器的性能。

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