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Influence of network voltage level, converter topology and integration of energy storage on the power losses of STATCOM devices

机译:网络电压水平,转换器拓扑结构和能量存储集成对STATCOM设备的功率损耗的影响

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摘要

This paper presents an analysis of power losses in 2.1 MVA static synchronous compensator (STATCOM) devices and STATCOMs with integrated energy storage (ESTATCOM). The analysis was carried out by means of computer simulations, with the main focus on studying the influence of network voltage level (690 V – 2 kV), voltage source converter (VSC) topology (2-or 3-level) and energy storage integration on the losses of STATCOMs. Power loss models for LCL-filters, VSC bridges, DC/DC converter power stages and inductors, as well as supercapacitor banks were developed. According to the results the losses are minimized when a 3-level VSC is used, and the compensator is connected to the network voltage of 690 V, and the ESTATCOM energy storage is connected to the dc link with two separate DC/DC converters. This occurs because the system converters can be implemented with IGBTs of lowest rated voltage.
机译:本文介绍了2.1 MVA静态同步补偿器(STATCOM)器件和集成储能器(ESTATCOM)的STATCOM的功率损耗分析。分析是通过计算机模拟进行的,主要侧重于研究网络电压水平(690 V – 2 kV),电压源转换器(VSC)拓扑(2或3电平)和能量存储集成的影响STATCOM的损失。开发了用于LCL滤波器,VSC桥,DC / DC转换器功率级和电感器以及超级电容器组的功率损耗模型。根据结果​​,当使用三电平VSC时,损耗被最小化,补偿器连接到690 V的网络电压,ESTATCOM能量存储通过两个独立的DC / DC转换器连接到dc链路。发生这种情况是因为可以使用最低额定电压的IGBT来实现系统转换器。

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