Implementation of the predictive current control of multi-pulse flexible topology thyristor rectifier under unbalanced source voltages

Zhang Damin, W. Shitao, Kang Shaobo, Z. Ji
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Abstract

Abstract: Predictive current control strategy has captured much concern recently in power converters. As for the multi-pulse flexible-topology thyristor rectifiers (m-PFTTR), the symmetry of the input line-to-line voltages has great influence upon the implementation of the control strategy. Existing literatures have mainly focused on the implementation under ideal condition, i.e., the input line-to-line voltages, being critical to the predictive current controller, were supposed to be symmetrical. In fact, the unbalance of the input line-to-line voltages usually exists in the windings of the zigzag transformer at front end and the A/D converter of the digital signal processor (DSP). This paper presents a new method to dynamically regulate the input line-to-line voltages to ensure the symmetry of each other. It is realized through the instantaneous correction of the bias values in the course of sampling, and the correction is embodied in the modified control algorithm. The paper includes analyses of the m-PFTTR as well as the control algorithm, simulation and experiments. Simulation and experimental results demonstrate the effectiveness of the presented method.
源电压不平衡条件下多脉冲柔性拓扑可控硅整流器预测电流控制的实现
摘要:预测电流控制策略是近年来电力变换器中备受关注的问题。对于多脉冲柔性拓扑晶闸管整流器(m-PFTTR),输入电压的对称性对控制策略的实现有很大影响。现有的文献主要集中在理想条件下的实现,即对预测电流控制器至关重要的输入线对线电压应该是对称的。实际上,输入线对线电压的不平衡通常存在于前端之字形变压器和数字信号处理器(DSP)的A/D转换器的绕组中。本文提出了一种动态调节输入电压的新方法,以保证输入电压的对称性。它是通过对采样过程中的偏置值进行瞬时校正来实现的,这种校正体现在改进的控制算法中。本文包括对m-PFTTR的分析、控制算法、仿真和实验。仿真和实验结果验证了该方法的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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