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Current Stress Optimization and Efficiency Increase of DAB with Triple-Phase-Shift Control Based on 2-Dimensional Ergodicity Method

机译:基于二维遍历法的三相移控制DAB的电流应力优化和效率提高

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Finding the method to maximize the potential of current stress reducing and system efficiency increasing is one of the most interesting and significant topics when TPS control is utilized in DAB. Correct classification of different operating models is an essential basic work, and the TPS method with bidirectional power flow is classified into 12 models on the basis of voltage decoupling of primary and secondary H-bridges in this paper. The transmission power and current stress expressions are fully derived with arbitrary combination of three phase-shift control freedoms for the whole operating range. A 2-dimensional ergodicity method is proposed in this paper to find the best combination of the two inner phase-shift ratios, which is expected to achieve the minimized current stress and increased system efficiency. The theoretical optimized results for different power and voltage conversion ratio is given in the paper with comparison of SPS control. Experiments are implemented on laboratory prototype, the current stress expressions and the effectiveness of ergodicity method are proved by experimental results.
机译:当在DAB中使用TPS控制时,寻找使电流应力减小和系统效率提高的潜力最大化的方法是最有趣和重要的主题之一。正确分类不同的运行模型是一项必不可少的基础工作,本文基于一次和二次H桥的电压去耦,将双向潮流的TPS方法分为12个模型。通过在整个工作范围内三个相移控制自由度的任意组合,可以完全得出传输功率和电流应力表达式。本文提出了一种二维遍历方法,以找到两个内部相移比的最佳组合,有望实现最小的电流应力并提高系统效率。通过比较SPS控制,给出了不同功率和电压转换比的理论优化结果。实验是在实验室样机上进行的,实验结果证明了目前的应力表达和遍历方法的有效性。

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