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Soft-Switching Solid-State Transformer With Reduced Conduction Loss

机译:软切换固态变压器,导通损耗降低

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Solid-state transformers (SSTs) are a promising solution photovoltaic (PV), wind, traction, data center, battery energy storage system (BESS), and fast charging electric vehicle (EV) applications. The traditional SSTs are typically three-stage, i.e., hard-switching cascaded multilevel rectifiers and inverters with dual active bridge (DAB) converters, which leads to bulky passives, low efficiency, and high electromagnetic interference (EMI). This article proposes a new soft-switching solid-state transformer (S4T). The S4T has full-range zero-voltage switching (ZVS), electrolytic capacitor-less dc link, and controlled dv/dt, which reduces EMI. The S4T comprises two reverse-blocking current-source inverter (CSI) bridges, auxiliary branches for ZVS, and transformer magnetizing inductor as a reduced dc link with 60% ripple. Compared with the prior S4T, an effective change on the leakage inductance diode is made to reduce the number of the devices on the main power path by 20% for significant conduction loss saving and retain the same functionality of damping the resonance between the leakage and resonant capacitors and recycling trapped leakage energy. The conduction loss saving is crucial, being the dominating loss mechanism in SSTs. Importantly, the proposed single-stage SST not only holds the potential for high power density and high efficiency but also has full functionality, e.g., multiport dc loads integration, voltage regulation, and reactive power compensation, unlike the traditional single-stage matrix SST. The S4T can achieve single-stage isolated bidirectional dc-dc, ac-dc, dc-ac, or ac-ac conversion. It can also be configured input-series output-parallel (ISOP) in a modular way for medium-voltage (MV) grids. Hence, the S4T is a promising candidate for the SST. The full functionality, e.g., voltage buck-boost, multiport, etc., and the universality of the S4T for the dc-dc, dc-ac, and ac-ac conversion are verified through the simulations and experiments of two-port and three-port MV prototypes based on 3.3 kV SiC mosfets in dc-dc, dc-ac, and ac-ac modes at 2 kV.
机译:固态变压器(SSTS)是一个有前途的溶液光伏(PV),风,牵引,数据中心,电池储能系统(BESS)和快速充电电动车(EV)应用。传统的SST通常是三级,即硬切换级联的多级整流器和具有双极桥(DAB)转换器的逆变器,导致庞大的无源,低效率和高电磁干扰(EMI)。本文提出了一种新型软切割固态变压器(S4T)。 S4T具有全范围的零电压开关(ZVS),电解电容器较少的直流链路和受控DV / DT,可减少EMI。 S4T包括两个反向阻断电流源逆变器(CSI)桥梁,用于ZVS的辅助分支,以及变压器磁化电感器,作为具有60%纹波的降低的直流链路。与先前的S4T相比,使漏电电流二极管的有效变化以减少主电源路径上的器件的数量20%,以便显着的导通损耗节省,并保持泄漏与谐振之间的共振的相同功能电容器和回收泄漏能量。传导损益储蓄至关重要,是SSTS中的主导损失机制。重要的是,所提出的单级SST不仅具有高功率密度和高效率的可能性,而且具有完全的功能,例如,多端口DC负载集成,电压调节和无功功率补偿,与传统的单级矩阵SST不同。 S4T可以实现单级隔离的双向DC-DC,AC-DC,DC-AC或AC-AC转换。它也可以以模块化方式配置输入级数输出并行(ISOP),用于中电压(MV)网格。因此,S4T是SST的有希望的候选者。通过两端和三个的模拟和实验,验证了DC-DC,DC-AC和AC-AC转换的S4T的完整功能,例如,电压降压 - 升压,多端口等,以及S4T的普遍性 - 在2 kV的DC-DC,DC-AC和AC-AC模式下,基于3.3 kV SiC MOSFET的Port MV原型。

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