Dynamic Performance of DAB with ModelPredictive Control Based on Double Phase Shifting

Qingtao Hou, Chang-yun Li, Minling Xu, Xin Cao, Yiming Liu
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引用次数: 2

Abstract

Due to the dual active converter, the various phase shifting angles in the transmitted power are coupled to each other. The result is that as the number of phase shifting angles increases, the flexibility of its control increases considerably, but so does the complexity of the control. This paper decouples the phase shifting angles in the transmitted power, thus providing a prerequisite for the multiple phase shifting in Model Predictive Control (MPC) later on. Firstly, the phase shift angle of the transmitted power is decoupled by replacing it with a new variable. Secondly, the MPC is applied after the decoupling in order to predict the future p states. The substitution reduces the complexity of the operation and at the same time the error in the output is relatively small. Finally the correctness of the method is verified by means of simulation.
基于双相移模型预测控制的DAB动态性能研究
由于双有源变换器,发射功率中的各种相移角是相互耦合的。其结果是,随着移相角数量的增加,其控制的灵活性大大增加,但控制的复杂性也随之增加。本文对传输功率中的相移角进行了解耦,为后续模型预测控制(MPC)中的多次相移提供了前提条件。首先,将传输功率的相移角替换为一个新的变量来解耦。其次,在解耦后应用MPC来预测未来的p状态。代入降低了运算的复杂性,同时输出的误差也相对较小。最后通过仿真验证了该方法的正确性。
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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