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Droop Control Implementation In Solid State Transformer

机译:固态变压器的下垂控制实现

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In this paper, a simulation study is done on the performance of solid state transformer (SST) based micro-grid with implementation of droop control system. SST, which consists of AC-DC converter, DC-DC converter, and DC-AC converter is being employed as the interface between the main grid and the micro-grid. As DC link is introduced at the DC-DC converter side of the SST, voltage and frequency isolation between the main grid and the micro-grid can be achieved. Thus, a frequency droop control system can be implemented at the output of the SST, without affecting the frequency of the main grid. This is an advantage for the active generators of dispersed generation (DG) such as photovoltaic or wind generation system in the micro-grid area, as they have to change their power dispatching based on the frequency droop. Simulation done in Matlab Simulink shows the performance of the developed system.
机译:本文通过下垂控制系统的实现,对基于固态变压器(SST)的微电网的性能进行了仿真研究。 SST由AC-DC转换器,DC-DC转换器和DC-AC转换器组成,被用作主电网和微电网之间的接口。通过在SST的DC-DC转换器侧引入DC链路,可以实现主电网与微电网之间的电压和频率隔离。因此,可以在SST的输出端实施频率下降控制系统,而不会影响主电网的频率。这对于微电网区域中的分布式发电(DG)有源发电机(例如光伏发电系统或风力发电系统)而言是一个优势,因为它们必须根据频率下降来更改其功率分配。在Matlab Simulink中进行的仿真显示了所开发系统的性能。

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