基于去耦合方案的三相高频链路矩阵变换器模型预测控制

Tianran Fu, Zhaoyang Yan, E. Pashajavid, Liaqat Ali
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引用次数: 1

摘要

提出了一种三相高频链路矩阵逆变器的模型预测控制策略。利用去耦合的概念将由双向开关组成的矩阵变换器分解为两个具有单向开关的常规逆变器。然后,提出了一种有限控制集MPC (FCS-MPC)方案来生成开关的开关命令,成功地按照给定的参考轨迹调节输出电流。提出的基于去重耦合的MPC方法降低了hflmi调制过程的复杂度,并能有效地处理变压器漏感引起的电压尖峰。此外,该方法的计算量相对较少。利用Matlab/Simulink仿真实例对所开发策略的有效性进行了评估。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
De-Re-Coupling Scheme-based Model Predictive Control of a Three-phase High-Frequency Link Matrix Converter
This paper presents a model predictive control (MPC) strategy for a three-phase high-frequency link matrix inverter (HFLMI). The de-re-coupling concept will be utilised to decompose the matrix converter composed of bidirectional switches into two conventional inverters with unidirectional switches. Then, a finite control set MPC (FCS-MPC) scheme is developed to generate switching commands of the switches, successfully regulating output current following the given reference trajectory. The proposed de-re-coupling-based MPC method reduces the modulation procedure’s complexity for HFLMIs and can efficiently deal with voltage spikes caused by transformer leakage inductance. Further, the proposed method requires comparatively less computation. The efficacy of the developed strategy is evaluated using various Matlab/Simulink simulation cases.
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