Hysteresis Current Controllers with Limited Switching Frequency for Electric Traction Systems with Asynchronous Motor and Rotor Field Orientation Control

C. Suru, M. Popescu, A. Bitoleanu
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引用次数: 2

Abstract

The aim of this paper is the substantiation, implementation and validation of a principle to limit the switching frequency for the closed loop current control systems based on hysteresis controllers. The proposed system was designed for a traction system for electric locomotives based on voltage inverter and induction motor with rotor field orientation control. As the switching frequency depends on the system parameters and the chosen hysteresis band, the frequency limitation is obtained by adapting the hysteresis band on the measured mean switching frequency. This system is capable to reduce the mean switching frequency to the imposed value as the frequency controller is able to increase the hysteresis band from a minimum value to a maximum value. The switching frequency remains variable, but it is sufficiently lowered to reduce the switching losses and to avoid the power IGBTs to exceed the maximum switching frequency.
异步电动机和转子磁场定向控制的电力牵引系统的有限开关频率磁滞电流控制器
本文的目的是对基于迟滞控制器的闭环电流控制系统的开关频率限制原理进行验证、实现和验证。该系统是针对一种基于电压逆变器和感应电动机转子磁场定向控制的电力机车牵引系统而设计的。由于开关频率取决于系统参数和所选择的滞回带,因此通过对测量的平均开关频率进行滞回带调整来获得频率限制。由于频率控制器能够将滞后带从最小值增加到最大值,因此该系统能够将平均开关频率降低到所施加的值。开关频率是可变的,但它足够低,以减少开关损耗,避免功率igbt超过最大开关频率。
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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