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首页> 外文期刊>電気学会論文誌 D:產業応用部門誌 >Maximum Efficiency Operation of Vector-Controlled Synchronous Reluctance Motors Considering Cross-Magnetic Saturation
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Maximum Efficiency Operation of Vector-Controlled Synchronous Reluctance Motors Considering Cross-Magnetic Saturation

机译:考虑过磁饱和的矢量控制同步磁阻电动机的最大效率运行

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摘要

The direct and quadrature axes inductances of flux barrier type Synchronous Reluctance Motors (SynRM) change depending on the magnitude of both direct and quadrature axes currents under the influence of the cross-magnetic saturation. This paper presents a maximum efficiency operation method of SynRMs with cross-magnetic saturation. An improved approximate equation that accurately expresses the inductance variation caused by cross-magnetic saturation is utilized for calculating the Maximum Efficiency Operation Current (MEOC, i.e., the d-axis current at maximum efficiency) at each load point. A vector control system in which the steady-state driving efficiency is maximized by selecting a d-axis current command from the obtained MEOC is shown. By considering cross-magnetic saturation the proposed method not only maximizes the efficiency but also improves the torque control accuracy. The validity of this method is demonstrated with calculated and measured results of on-load characteristics.
机译:在交叉磁饱和的影响下,磁通势垒型同步磁阻电机(SynRM)的直轴和正交轴电感会根据直轴和正交轴电流的大小而变化。本文提出了一种具有交叉磁饱和的SynRMs的最大效率运算方法。一种改进的近似方程可以精确地表达由交叉磁饱和引起的电感变化,用于计算每个负载点的最大效率工作电流(MEOC,即最大效率下的d轴电流)。示出了一种矢量控制系统,其中通过从所获得的MEOC中选择d轴电流指令来使稳态驱动效率最大化。通过考虑交叉磁饱和,该方法不仅使效率最大化,而且提高了转矩控制精度。计算和测量的负载特性结果证明了该方法的有效性。

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