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Voltage and current balance control for the ISOP converter-based power electronic transformer

机译:基于ISOP转换器的电力电子变压器的电压和电流平衡控制

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The power electronic transformer (PET) is a key interface for both ac and dc systems in future smart grid. As a topology suitable for high power applications, the input-series output-paralleled (ISOP) converter-based PET normally consists of three-stage, the input cascaded ac/dc input stage, the high-frequency transformer dc/dc isolated stage, and the optional dc/ac output stage. For the ISOP topology, the difference of sub-module parameters may cause the unbalanced voltage and current issues. This paper firstly investigates Impact of the different module parameters on the input dc voltage and output dc current. To resolve the unbalanced voltage, a method based on single-phase dq decoupled control is proposed. In addition, a new control strategy is introduced in dual active bridge (DAB) parallel modules to realize the power balance. Finally, the proposed voltage and current control methods are verified by the simulation studies using MATLAB/Simulink.
机译:电力电子变压器(PET)是未来智能电网中交流和直流系统的关键接口。作为适合大功率应用的拓扑,基于输入串联输出并行(ISOP)转换器的PET通常包括三级,输入级联的ac / dc输入级,高频变压器dc / dc隔离级,以及可选的dc / ac输出级。对于ISOP拓扑,子模块参数的差异可能会导致电压和电流不平衡问题。本文首先研究了不同模块参数对输入直流电压和输出直流电流的影响。为了解决电压不平衡问题,提出了一种基于单相dq解耦控制的方法。此外,在双有源桥(DAB)并行模块中引入了一种新的控制策略,以实现功率平衡。最后,通过MATLAB / Simulink的仿真研究验证了所提出的电压和电流控制方法。

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