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Analysis of Using FACTS Controllers with Superconducting Magnetic Energy Storage in the Primary Frequency Control of Power Systems

机译:电力系统初时频率控制中具有超导磁能存储的事实控制器的分析

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The operation security of the power system (PS) in case of contingencies is ensured by maintaining adequate "short-term generation reserve". This reserve must be appropriately activated by means of the primary frequency control (PFC), aiming at preserving the system frequency within acceptable limits during the transient. An alternative to effectively enhance the PFC and therefore the security is to use superconducting magnetic energy storage (SMES) in combination with flexible ac transmission systems (FACTS) in such a way that active power can be injected, at a fast response, to the electric network. This paper studies the dynamic performance of a static synchronous compensator (STATCOM) integrated with SMES for improving the PFC. A model approach of the STATCOM/SMES system and a multilevel control scheme of the coordinated system are presented. Finally, technical analysis is performed to obtain conclusions about the benefits of using SMES devices in the PFC of the electric system.
机译:通过维持足够的“短期生成储备”,确保了电力系统(PS)的操作安全性。该储备必须通过初级频率控制(PFC)适当激活,旨在在瞬态期间保留系统频率在可接受的限度内。有效地提高PFC的替代方案,因此安全是使用超导磁能存储(SME)与柔性AC传输系统(事实)组合,以便在快速响应到电动时可以注入有源电力网络。本文研究了与中小企业集成的静态同步补偿器(Statcom)的动态性能,以改善PFC。提出了一种模型方法,STATCOM / SMES系统和协调系统的多级控制方案。最后,进行技术分析以获得关于在电系统的PFC中使用中小企人器件的益处的结论。

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