Online Efficiency Optimization of a Fuzzy Logic Controller Based IPMSM Drive

M. Uddin, R. S. Rebeiro
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引用次数: 65

Abstract

This paper presents an online loss minimization algorithm (LMA) for a fuzzy logic controller (FLC) based interior permanent magnet synchronous motor (IPMSM) drive to yield high efficiency and high dynamic performance over wide speed range. The loss minimization algorithm is developed based on the motor model. In order to minimize the controllable electrical losses of the motor and thereby maximize the operating efficiency the d-axis armature current is controlled optimally according to the operating speed and load conditions. For vector control purpose, a fuzzy logic controller (FLC) is used as a speed controller which enables the utilization of the reluctance torque to achieve high dynamic performance as well as to operate the motor over a wide speed range. In order to test the performance of the proposed drive in real-time, the complete drive is experimentally implemented using DSP board DS1104 for a prototype laboratory 5 hp motor. The performance of the proposed loss minimization based FLC for IPMSM drive is tested in both simulation and experiment at different operating conditions. A performance comparison of the drive with and without the proposed LMA based FLC is also provided. It is found from the results that the proposed LMA and FLC based drive demonstrates higher efficiency and better dynamic responses over FLC based IPMSM drive without LMA.
基于模糊控制器的IPMSM驱动器在线效率优化
本文提出了一种基于模糊控制器(FLC)的内部永磁同步电机(IPMSM)驱动的在线损耗最小化算法(LMA),以在宽速度范围内获得高效率和高动态性能。在电机模型的基础上,提出了损耗最小化算法。为了使电机的可控电损耗最小化,从而使运行效率最大化,根据运行速度和负载条件对d轴电枢电流进行优化控制。在矢量控制中,采用模糊逻辑控制器(FLC)作为速度控制器,利用磁阻转矩实现高动态性能,并在较宽的速度范围内运行电机。为了实时测试所提出的驱动器的性能,利用DSP板DS1104在实验室原型5马力电机上实验实现了完整的驱动器。在不同的工作条件下,对所提出的基于损耗最小化的IPMSM驱动FLC的性能进行了仿真和实验测试。此外,还提供了采用和不采用基于LMA的FLC的驱动器的性能比较。结果表明,与不含LMA的基于FLC的IPMSM驱动器相比,基于LMA和FLC的IPMSM驱动器具有更高的效率和更好的动态响应。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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