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Enabling High Efficiency in Low-Voltage Soft-Switching Current Source Converters

机译:在低压软开关电流源转换器中实现高效率

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While conventional reverse blocking (RB) switch structures consisting of an active switch (MOSFET or IGBT) and a series diode can enable high efficiency operation in high-voltage (>600 VAC and >1000 VDC), high-power (25-50 kVA) current source converters (CSCs), the high conduction losses associated with conventional RB structures have prevented widescale adoption of CSCs in low-voltage applications. This work presents the design and experimental validation of the patent-pending Synchronous Reverse Blocking Switch, a method of integrating a bidirectional dual-active-switch structure into the Soft-Switching Solid-State Transformer (S4T) topology to unlock high efficiency operation in low-voltage, high-current applications. By leveraging the operating principles of the S4T, whose control eliminates the possibility of shoot-through and provides zero-voltage switching (ZVS) conditions for all power devices across the entire load range, the Synchronous Reverse Blocking Switch has been demonstrated to offer significant conduction loss reductions while also mitigating the reverse recovery of the PN-junction MOSFET body diode which replaces the series diode of the conventional RB switch. Key contributions of this work include device-level validation of the reverse recovery mitigation mechanism of the Synchronous RB Switch, and system level validation through the design and performance measurement of a 48 VDC S4T bridge, which achieved 97.8% efficiency at a power delivery level of 750W and evidenced the strategy’s benign reverse recovery properties.
机译:由有源开关(MOSFET或IGBT)和串联二极管组成的常规反向阻断(RB)开关结构可以在高电压(> 600 VAC和> 1000 VDC),高功率(25-50 kVA)下实现高效率的操作在电流源转换器(CSC)中,与传统RB结构相关的高传导损耗已阻止了CSC在低压应用中的广泛采用。这项工作介绍了正在申请专利的同步反向阻塞开关的设计和实验验证,该方法是将双向双有源开关结构集成到软开关固态变压器(S4T)拓扑中以在低电压下实现高效率运行的一种方法电压,大电流应用。通过利用S4T的工作原理,其控制消除了击穿的可能性,并为整个负载范围内的所有功率器件提供了零电压开关(ZVS)条件,同步反向阻断开关已被证明具有出色的导通性在降低损耗的同时,还减轻了PN结MOSFET体二极管的反向恢复,该二极管替代了常规RB开关的串联二极管。这项工作的主要贡献包括同步RB交换机的反向恢复缓解机制的设备级验证,以及通过48 VDC S4T桥的设计和性能测量进行的系统级验证,在功率等级为48 VDC时达到了97.8%的效率。 750W,并证明了该策略的良性反向恢复特性。

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