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Analytically constrained ZVS operation to reduce commutation losses for high boost dual active bridge converters

机译:分析约束的ZVS操作以减少高升压双有源桥式转换器的换向损耗

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Dual Active Bridge (DAB) converters offer an unmatched capability to transfer energy in either direction between two DC sources, especially when they are operated under Zero Voltage Switching (ZVS) conditions. However, the parasitic commutation inductance within the bridge phase leg devices can still lead to significant energy losses at device turn-off despite operating under ZVS conditions. These losses can become significant when one bridge has a low DC bus voltage and a consequential high magnitude output current. This paper shows how harmonic decomposition analysis can be used to constrain the bridge circulating currents to their minimum possible values at the point of phase leg commutation while still ensuring that ZVS operation is maintained. This can be used to improve the overall DAB performance under low voltage, high current operating conditions of one DC port. The capability of the theoretical analysis process is confirmed by matching experimental results for a reference DAB system.
机译:双有源桥(DAB)转换器具有无与伦比的能力,可以在两个直流电源之间的任一方向上传输能量,特别是当它们在零电压开关(ZVS)条件下工作时。然而,尽管在ZVS条件下运行,桥相支路器件内的寄生换向电感仍会在器件关断时导致大量能量损耗。当一个桥具有低的直流总线电压和随之而来的高幅值输出电流时,这些损耗会变得很明显。本文展示了如何在谐波支路换相时如何使用谐波分解分析将电桥循环电流限制在其最小可能值,同时仍确保维持ZVS运行的情况。这可用于改善一个DC端口在低电压,大电流操作条件下的总体DAB性能。理论分析过程的能力通过匹配参考DAB系统的实验结果得到确认。

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