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7.2 kV Three-Port Single-Phase Single-Stage Modular Soft-Switching Solid-State Transformer with Active Power Decoupling and Reduced DC-Link

机译:7.2 kV三端口单相单级模块化软开关固态变压器,具有有源功率去耦和减少的直流母线

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This paper proposes a single-stage modular medium-voltage soft-switching solid-state transformer (M-S4T). The 7.2 kV 50 kVA M-S4T consists of five stacked 1.44 kV 10 kVA single-phase converter modules using 3.3 kV SiC MOSFETs and diodes in reverse blocking mode. The proposed converter has some unique features. First, the M-S4T is a medium-voltage stacked converter with reduced dc-link. Second, the M-S4T has a three-port structure (MVAC, LVAC, LVDC) for renewable, storage integration, or EV fast charging. Third, the M-S4T is a single-phase medium-voltage converter with active power decoupling, i.e. using a buffer port for 120 Hz power absorption to avoid large dc-link passives. According to the literature, though already applied to low-voltage converters for improved power density, the reduced dc-link and active power decoupling strategies have not been used in medium-voltage converters before. With high-frequency isolation, reduced dc-link, and a 120 Hz active power decoupling port, passive components in the MS4T can be minimized – which often dominate the size of medium-voltage converters. Also, the M-S4T is electrolytic capacitor less and high reliability is achieved – critical for utility applications like SST. Moreover, the 7.2 kV M-S4T has low EMI through low dv/dt, and high efficiency (~97% expected at full power) over the full load range with ZVS technique. Finally, the transformer of the M-S4T is designed to pass 55 kV basic-insulation level (BIL) and 60 kV high potential (Hipot) dielectrics withstand test – major challenges for SST. The topology, design, operating principle, controls, and simulation results are presented. These concepts are finally verified with experimental results at 2 kV peak of a single converter module and 1.6 kV peak of two stacked modules.
机译:本文提出了一种单级模块化中压软开关固态变压器(M-S4T)。 7.2 kV 50 kVA M-S4T由五个堆叠的1.44 kV 10 kVA单相转换器模块组成,这些模块使用3.3 kV SiC MOSFET和反向阻断模式的二极管。拟议的转换器具有一些独特的功能。首先,M-S4T是具有减少的直流链路的中压堆叠式转换器。其次,M-S4T具有三端口结构(MVAC,LVAC,LVDC),用于可再生,存储集成或EV快速充电。第三,M-S4T是具有有源功率去耦功能的单相中压转换器,即使用缓冲端口吸收120 Hz功率来避免大型直流链路无源器件。根据文献,尽管已经将其应用于低压转换器以提高功率密度,但减少的直流链路和有功功率去耦策略以前尚未在中压转换器中使用。通过高频隔离,减少的直流链路和120 Hz的有功功率去耦端口,可以使MS4T中的无源组件最小化,而这通常在中压转换器的尺寸中占主导地位。此外,M-S4T的电解电容器更少,并且实现了高可靠性-对于SST等公用事业应用而言至关重要。此外,7.2 kV M-S4T通过低dv / dt具有低EMI,并且采用ZVS技术在整个负载范围内具有很高的效率(在满功率情况下,预计约为97%)。最后,M-S4T的变压器经过设计,可通过55 kV基本绝缘等级(BIL)和60 kV高电势(Hipot)电介质耐压测试–这是SST的主要挑战。介绍了拓扑,设计,工作原理,控制和仿真结果。这些概念最终在单个转换器模块的2 kV峰值和两个堆叠模块的1.6 kV峰值的实验结果中得到了验证。

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