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Unified Triple-Phase-Shift Control to Minimize Current Stress and Achieve Full Soft-Switching of Isolated Bidirectional DC–DC Converter

机译:统一的三相移相控制可最大程度地降低电流应力,并实现隔离双向DC-DC转换器的完全软开关

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摘要

This paper presents a comprehensive analysis of the current-stress optimization and soft-switching operation of the isolated bidirectional dual active bridge (DAB) dc–dc converter with the unified triple-phase-shift (UTPS) control. On this basis, the current-stress-optimized modulation scheme is proposed for DAB, which leads to the minimum current stress with the required transmission power and voltage conversion ratio in the whole load range. Moreover, the full soft-switching operation is achieved for the converter simultaneously. Distinct from the previous modulation schemes, the proposed optimized modulation scheme is deduced from a unified analysis of TPS where all effective switching modes are investigated. A novel algorithm based on the Karush–Kuhn–Tucker (KKT) conditions is originally proposed to derive closed-form solutions for the global optimal control parameters. This paper also presents a typical closed-loop control strategy for DAB with TPS control and detailed descriptions about the closed-loop operation. A laboratory prototype is applied, and the experimental results validate that the current-stress optimization and efficiency improvement are realized by applying the optimized modulation scheme. The experimental results also verify the effectiveness of the closed-loop control strategy for DAB with TPS control.
机译:本文对具有统一三相移(UTPS)控制的隔离双向双有源桥(DAB)dc-dc转换器的电流应力优化和软开关操作进行了全面分析。在此基础上,提出了针对DAB的电流应力优化调制方案,该方案可在整个负载范围内以所需的传输功率和电压转换比实现最小的电流应力。此外,同时为转换器实现了完整的软开关操作。与以前的调制方案不同,从对TPS的统一分析(其中研究了所有有效的开关模式)得出了建议的优化调制方案。最初提出了一种基于Karush–Kuhn–Tucker(KKT)条件的新颖算法来导出全局最优控制参数的闭式解。本文还介绍了具有TPS控制的DAB的典型闭环控制策略,并详细介绍了闭环操作。应用实验室样机,实验结果验证了通过应用优化的调制方案可以实现电流应力优化和效率提高。实验结果还验证了采用TPS控制的DAB的闭环控制策略的有效性。

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