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A Multistructure Multimode Three-Phase Dual-Active-Bridge Converter Targeting Wide-Range High-Efficiency Performance

机译:多模多模三相双极桥转换器,其瞄准宽范围高效率性能

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摘要

A three-phase dual-active-bridge (3p-DAB) converter is an attractive topology for bidirectional power conversion in high-power applications. However, conduction and switching losses are two main loss mechanisms that severely affect its efficiency performance, and adoption of any single modulation scheme or topology cannot minimize these losses over a wide operating range. For this purpose, a reconfigurable topology of the 3p-DAB converter is proposed in this article that utilizes a reconfigurable and tunable resonant network to offer multiple degrees of freedom in minimizing conduction and switching losses over a wide range of operating conditions. The converter is designed such that for 40–100% of the rated output power, it operates as a tunable 3p-DAB resonant immittance converter with its output power controlled by varying switching frequency and tuning the resonant frequency of a resonant immittance network to track the switching frequency. Below 40% of the rated output power, the converter transforms to a tunable 3p-DAB series-resonant converter with its output power controlled by varying the impedance of a series-resonant network while keeping the switching frequency and phase shift constant. The combination of both operation modes jointly leads to wide-range zero circulating current and soft switching of all the switches and, hence, a wide-range high-efficiency performance, as validated by the experimental results.
机译:三相双极 - 桥(3P-DAB)转换器是高功率应用中双向功率转换的有吸引力的拓扑。然而,传导和切换损耗是两个主要损耗机制,严重影响其效率性能,采用任何单一调制方案或拓扑结构不能在宽的工作范围内最小化这些损失。为此目的,在本文中提出了一种可重新配置的3P-DAB转换器的拓扑,其利用可重新配置和可调谐的谐振网络在最小化广泛的操作条件下最小化导通和切换损耗时提供多个自由度。转换器设计成使得40-100%的额定输出功率,它作为可调谐的3P-DAB谐振凹口反转器,其输出功率通过改变开关频率控制,并调整共振常驻网络的谐振频率以跟踪开关频率。低于额定输出功率的40%,转换器通过改变串联谐振网络的阻抗来改变可调谐的3P-DAB系列 - 谐振转换器,通过改变串联谐振网络的阻抗,同时保持开关频率和相移常数。两种操作模式的组合都会共同导致所有开关的宽范围零循环电流和软切换,因此,由实验结果验证的广泛的高效性能。

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