矩阵变换器馈电标量控制同步电机驱动器的设计与仿真

P. Kulkarni, M.T. Abraham, S.P. Das
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引用次数: 3

摘要

矩阵变换器是一种没有直流链路的交流/交流变换器。它的工作原理与环变换器基本相同,但具有更好的谐波分布、更大的输出频率范围和可控的输入位移因数。同步电动机用于许多工业应用,如水泥窑,矿山绕线机等。虽然同步电机主要用于高功率应用,但矩阵变换器也可以用于驱动永磁同步电机,并进行适当的修改,用于中等功率应用。提出了一种由矩阵变换器馈电的绕线磁场同步电动机的标量控制方案。该方案以同步电动机稳态相量图为基础,使电动机运行时的位移功率因数统一。设计了一种适合于闭环速度控制的PI控制器。在此基础上,提出了一种保证高速下统一功率因数(UPF)的改进V/f方案。仿真结果验证了所提控制方案的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Design and simulation of a matrix converter-fed scalar controlled synchronous motor drive
Matrix converter is an ac/ac converter without a dc link. It acts much the same way as a cycloconverter, but with better harmonic profile, large range of output frequency and controllable input displacement factor. A synchronous motor is used in many industrial applications such as cement kilns, mine winders, etc. Although synchronous motors are mostly used for high power applications, the matrix converter can also be used to drive a permanent magnet synchronous motor with suitable modification for medium power applications. The present paper proposes a scalar control scheme for a wound field synchronous motor fed from a matrix converter. The scheme is based on steady state phasor diagram of the synchronous motor, and results in unity motor displacement power factor during operation. A suitable PI controller for closed-loop speed control is designed. Subsequently, a modified V/f scheme which ensures unity power factor (UPF) at high speeds is proposed. The simulation results for the proposed control scheme are verified.
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