四支路间接矩阵变换器的一种简单的单位位移功率因数预测电压控制方法

M. Rivera, J. Rodríguez, C. García, R. Peña, J. Espinoza
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引用次数: 13

摘要

目前已知的四支矩阵变换器的调制和控制技术都是基于脉宽调制或三维空间矢量调制,本文提出了一种预测范围为一个采样时间的有限控制集模型预测控制策略来控制四支间接矩阵变换器。在变换器和负载之间连接一个LC输出滤波器。设计了四支路间接矩阵变换器,用于向不平衡/非线性三相负载供电,该变换器可在外加一个支路的情况下独立产生三个输出电压。所提出的电压控制策略是基于预测计算来选择变换器的开关状态。通过预测代价函数,选择下一个采样时间的最优切换状态。这样做是为了在任何时候获得输入侧的单位位移功率因数和正直流电压,同时保持对各自参考负载电压的良好跟踪。仿真结果验证了所提策略的可行性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A simple predictive voltage control method with unity displacement power factor for four-leg indirect matrix converters
While the known modulation and control techniques for four-leg matrix converters are based on pulse width modulation or three-dimensional space vector modulation, this paper presents a finite control set model predictive control strategy with a prediction horizon of one sample time to control the four-leg indirect matrix converter. An LC output filter is connected between the converter and the load. The four-leg indirect matrix converter is developed to deliver power to the unbalanced/nonlinear three-phase loads and it can produce three output voltages independently with one additional leg. The proposed voltage control strategy is based on prediction calculation to select the switching states of the converter. By using a predictive cost function, the optimal switching state to be applied to the next sampling time is selected. This is done in order to obtain unity displacement power factor in the input side and a positive dc-link voltage at any time, while maintaining a good tracking of the load voltages to their respective references. The feasibility of the proposed strategy is verified by simulation results.
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