利用MATLAB仿真技术实现单相异步电动机的最大转矩运行

Swati Singla, Jyoti Srivastava, D. Blandina
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引用次数: 1

摘要

在家用和工业中使用的分千瓦电机大多是单相供电的非对称两相感应电动机。为了提取三相感应电机的最佳性能,已有许多控制技术,但单相感应电机的控制还没有这样的通用技术。本文研究了一种采用动态电容实现最大转矩工作的SPIM。SPIM利用电压源逆变器(VSI)的直流母线上电容的间接电流控制,使其可以作为可变电容工作。然后,通过将该动态电容器与辅助绕组串联,得到最大转矩运行,并以这种方式控制主绕组和辅助绕组电流相互相交。在定子参照系(d-q)中建立了动态电容的动态模型。针对所提出的结构,利用MATLAB对SPIM的性能进行了研究,验证了动态电容的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Obtaining maximum torque operation of single phase induction motor using simulation technique of MATLAB
Fractional KW electrical machines used in domestic and industrial applications are mostly asymmetrical two phase induction motor supplied by single phase supply. Though many techniques are available for control of three phase induction machine for extracting its best performance, but no such generalized technique is available for controlling Single Phase Induction Motor (SPIM). In this paper, a SPIM is studied, where a dynamic capacitor is used for obtaining maximum torque operation. The SPIM makes use of indirect current control of Voltage Source Inverter (VSI) with a capacitor on its DC bus, so that it can work as a variable capacitor. Then a maximum torque operation is obtained, by connecting this dynamic capacitor in series with the auxiliary winding, and is controlled in such a way to keep the main and auxiliary winding currents in phase quadrature to each other. And along with dynamic capacitor a dynamic model is developed in stator reference frame (d-q). For proposed configuration, performance of the SPIM is studied using MATLAB, to demonstrate the effectiveness of the dynamic capacitor.
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