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Seamless black start and reconnection of LCL-filtered solid state transformer based on droop control

机译:基于下垂控制的LCL滤波固态变压器的无缝黑色启动和重新连接

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The solid state transformer (SST) is an emerging technology that can replace conventional passive transformers and actively manage renewable energy resources, energy storage devices, and loads. In this paper, a seamless black start control strategy is proposed for an SST-based smart grid system that has fault ride-through capability when it is islanded from the grid. Also, a method is developed to achieve smooth reconnection to the grid after a fault is cleared. The main component of the proposed control strategy is control of the high-voltage side converter of the SST (HV SST), which is based on a combination of droop control and an LCL filter. A single-loop controller for the capacitor voltage of the LCL filter is proposed, and simple criteria for setting compensator gains are provided. A low-voltage scaled SST system is introduced, and the controllers of the converters within the system are described. The proposed control strategy has been tested in simulation and experimentally on a low-voltage scaled testbed.
机译:固态变压器(SST)是一种新兴技术,可以代替传统的无源变压器并积极管理可再生能源,储能设备和负载。本文针对基于SST的智能电网系统提出了一种无缝的黑启动控制策略,该系统在脱离电网时具有故障穿越能力。此外,开发了一种方法,可在清除故障后实现与电网的平滑重新连接。所提出的控制策略的主要组成部分是对SST的高压侧转换器(HV SST)的控制,该控制基于降压控制和LCL滤波器的组合。提出了一种用于LCL滤波器的电容器电压的单环控制器,并提供了设置补偿器增益的简单准则。介绍了一种低压缩放SST系统,并描述了系统内转换器的控制器。拟议的控制策略已经在仿真中和在低压比例试验台上进行了实验测试。

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