A control strategy for optimum efficiency operation of high performance interior permanent magnet motor drives

O. Ojo, F. Osaloni, Z. Wu, M. Omoigui
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引用次数: 25

Abstract

This paper, using the concept of input-output linearization with decoupling, sets forth the speed control of the interior permanent magnet motor drives which simultaneously ensures the minimization of the losses-the copper and core losses. This control scheme is unique in that saturation dependent parameters such as the d and q axis inductances and the armature reaction dependent magnet flux linkage are included in the controller structure formulation and implementation. The proposed control scheme differs from known schemes which are either based on perturbation and search methods or on steady curve fitted graphs that map the command q and d axis currents based on reference torque. Unlike these methods, an optimization formulation that dynamically determines the reference currents/voltages required to achieve high performance speed control and total loss minimization is used. The control structure methodology, the nature of the variations of the machine parameters and how they influence the machine efficiency are clearly laid out.
高性能内置式永磁电机驱动最优效率运行控制策略
本文利用输入输出线性化解耦的概念,提出了在保证损耗(铜损耗和铁芯损耗)最小的同时,对永磁电机内部驱动进行速度控制的方法。该控制方案的独特之处在于,在控制器结构的制定和实现中包含了饱和相关参数,如d轴和q轴电感以及电枢反应相关的磁通链。所提出的控制方案不同于已知的方案,这些方案要么基于摄动和搜索方法,要么基于基于参考转矩映射命令q和d轴电流的稳定曲线拟合图。与这些方法不同的是,采用了一种动态确定参考电流/电压的优化公式,以实现高性能速度控制和总损耗最小化。明确阐述了控制结构、方法、机床参数变化的性质及其对机床效率的影响。
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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