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Arm Current Stress Reduction Technique for a Delta-Connected Solid State Transformer Using Zero-Sequence Current Injection

机译:使用零序电流注入的速率连接固态变压器的臂电流应力降低技术

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摘要

The medium voltage stage of solid state transformer (SST), as a grid-connected converter, is required to generate a negative-sequence (NS) current under certain conditions. Unfortunately, this NS current increases the arm current stress, which limits the operating range of the SST. This article proposes the concept of using a zero-sequence (ZS) current to reduce such a current stress in o-connected SST with a low voltage direct current port (SST+LVdc). An algorithm to determine the optimized ZS current is derived on basis of geometric and logic center dot. The theoretical analysis and the proposed control algorithm are verified by both simulation and experimental results. The proposed control method gives the o-connected SST+LVdc an advantage over the Y-connected SST+LVdc because it can only work on the o-connected cascaded H-bridge.
机译:固态变压器(SST)的中电压级作为电网连接的转换器需要在某些条件下产生负序列(NS)电流。 不幸的是,该NS电流增加了臂电流应力,这限制了SST的操作范围。 本文提出了使用零序(ZS)电流的概念,以利用低压直流端口(SST + LVDC)在O-Connected SST中降低这种电流应力。 确定优化ZS电流的算法在基于几何和逻辑中心点导出。 通过模拟和实验结果验证了理论分析和所提出的控制算法。 所提出的控制方法使O-CONECTIONSST + LVDC在Y连接的SST + LVDC上提供了优势,因为它只能在O连接的级联H桥上工作。

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