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Large-signal modeling of three-phase dual active bridge converters for electromagnetic transient analysis in DC grids

机译:三相双极电桥转换器对直流电网电磁瞬态分析的大信号建模

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摘要

The three-phase dual active bridge (3p-DAB) converter is widely considered in next-generation DC grid applications. As for traditional AC grids, the successful integration of power electronic converters in DC grids requires accurate time-domain system-level studies. As demonstrated in the existing literature, the development and efficient implementation of large-signal models of 3p-DAB converters are not trivial. In this paper, a generalized average model is developed, which enables system-level simulation of DC grids with 3p-DAB converters in electromagnetic transient type (EMT-type) programs. The proposed model is rigorously compared with alternative modeling techniques: ideal-model, switching-function and state-space averaging. It is concluded that the generalized average model provides an optimal solution when accuracy of transient response, reduction in computation time, and wideband response factors are considered.
机译:三相双极电桥(3P-DAB)转换器广泛考虑在下一代直流网格应用中。对于传统的AC电网,DC网格中的电力电子转换器的成功集成需要准确的时域系统级研究。如在现有文献中所示,3P-DAB转换器的大信号模型的开发和有效实施并不差。在本文中,开发了广泛的平均模型,其能够在电磁瞬态型(EMT-Type)程序中具有3P-DAB转换器的DC网格的系统级模拟。拟议的模型与替代建模技术严格进行了严格地进行了比较:理想模型,切换功能和状态空间平均。结论是,当考虑瞬态响应的准确性,计算时间和宽带响应因子的准确性时,广义平均模型提供了最佳解决方案。

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