Torque-Angle-Oriented Control of Induction Machines

Guoliang Zhang, P. Krein
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引用次数: 5

Abstract

Two independent control inputs can be applied to an induction machine at any moment. A common characteristic among conventional control methods is that they seek to keep the flux amplitude constant so that the induction machine has control characteristics similar to those of a dc machine. In this paper, a vector control scheme based torque angle is discussed. It is shown that by keeping the torque angle constant or regulating it in an appropriate manner, dynamic performance similar to those of traditional fixed-flux-level vector control methods can be achieved with lower energy consumption and simpler operation. Objectives such as maximum efficiency, maximum power factor, or maximum torque per amp can be achieved readily in steady state under this control.
感应电机的转矩定向控制
两个独立的控制输入可以在任何时刻应用于感应电机。传统控制方法的一个共同特点是,它们寻求保持磁通幅值恒定,使感应电机具有与直流电机相似的控制特性。本文讨论了一种基于转矩角的矢量控制方案。结果表明,通过保持转矩角恒定或适当调节转矩角,可以获得与传统定磁流级矢量控制方法相似的动态性能,且能耗更低,操作更简单。在这种控制下,在稳定状态下可以很容易地实现最高效率、最大功率因数或每安培最大扭矩等目标。
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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