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StatCom-SMES

机译:StatCom-SMES

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摘要

This article presents the modeling and control of the integration of a StatCom (static-synchronous compensator) with SMES (superconducting magnetic energy storage system) and its dynamic response to system oscillations caused by a three-phase fault. It has been shown that the StatCom-SMES combination can be very effective in damping power system oscillations. Adding energy storage enhances the performance of a StatCom and possibly reduces the MVA ratings requirements of the StatCom operating alone. This is important for a cost/benefit analysis of installing flexible AC transmission system controllers on utility systems. It should be noted that, in this study, the StatCom provides a real power flow path for SMES, but the SMES controller is independent of the StatCom controller. While the StatCom is ordered to absorb or inject reactive power, the SMES is ordered to absorb/inject real power. It was also observed that the location where the combined compensator is connected is important for improvement of overall system dynamic performance. Although the use of a reactive power controller seems more effective in a load area, this simulation study shows that a StatCom with real power capability can damp the power system oscillations more effectively, thereby stabilizing the system faster-if the StatCom-SMES controller is located near a generation area rather than a load area.
机译:本文介绍了StatCom(静态同步补偿器)与SMES(超导磁能存储系统)集成的建模和控制,以及其对由三相故障引起的系统振荡的动态响应。已经证明,StatCom-SMES组合在抑制电力系统振荡方面非常有效。增加能量存储可增强StatCom的性能,并可能降低单独运行StatCom的MVA额定值的要求。这对于在公用事业系统上安装灵活的交流输电系统控制器的成本/收益分析很重要。应当指出的是,在这项研究中,StatCom为SMES提供了真实的功率流动路径,但是SMES控制器独立于StatCom控制器。 StatCom被命令吸收或注入无功功率,而SMES被命令吸收/注入有功功率。还观察到组合补偿器的连接位置对于改善整体系统动态性能很重要。尽管在负载区域使用无功功率控制器似乎更有效,但是此模拟研究表明,具有Stat Power能力的StatCom可以更有效地衰减电力系统的振荡,从而在稳定StatCom-SMES控制器的情况下更快地稳定系统。靠近发电区而不是负荷区。

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