Constant switching frequency hysteresis controller for VSI fed Induction Motor drive using current error space phasor approach

Joseph Peter, R. Ramchand
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引用次数: 2

Abstract

A simple current error space vector (CESV)based constant switching frequency hysteresis controller for two level voltage source inverter fed Induction Motor(IM) drives is proposed in this paper. The main advantages of space phasor based hysteresis controllers such as fast dynamic response, adjacent voltage vector switching can be seen in the proposed controller. In addition to these, switching frequency variation can be eliminated substantially. The stator voltages estimated from the current ripple, calculation of vector switching times and voltage error vectors are used for the current error boundary calculation. The proposed controller selects only those inverter voltage vectors of the present sector which are adjacent to the machine voltage vectors for the entire range of operation to reduce current error. Bus clamping space vector pulse width modulation(BCSVPWM) is used for vector selection logic where only one zero state is used in a sub cycle of total switching time period. The proposed hysteresis controller based inverter fed drive scheme is simulated using SIMULINK toolbox of MATLAB for steady state and transient performance.
基于电流误差空间相量法的恒开关频率磁滞控制
提出了一种简单的基于电流误差空间矢量(CESV)的恒开关频率滞回控制方法,用于两电平电压源逆变式异步电动机驱动。基于空间相量的迟滞控制器具有动态响应快、相邻电压矢量切换等优点。除此之外,开关频率的变化可以基本上消除。根据电流纹波估计定子电压,计算矢量开关次数和电压误差矢量,计算电流误差边界。该控制器在整个工作范围内只选择当前扇区中与机器电压矢量相邻的逆变器电压矢量,以减小电流误差。总线箝位空间矢量脉宽调制(BCSVPWM)用于矢量选择逻辑,其中在总开关时间周期的子周期中只使用一个零状态。利用MATLAB的SIMULINK工具箱对所提出的基于磁滞控制器的逆变器馈动方案进行了稳态和暂态性能仿真。
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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