基于同步相量测量的提高互联电力系统稳定性的SMES控制器设计

S. Dechanupaprittha, K. Hongesombut, M. Watanabe, Y. Mitani, I. Ngamroo
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引用次数: 1

摘要

为了提高互联电力系统的稳定性,提出了一种基于同步相量测量的超导磁储能控制器的设计。电力系统中负荷突变引起的负荷变化会引起配线潮流的波动,严重干扰输电线路的有效利用。作为一种极具发展前景的储能装置,SMES在电力系统稳定中得到了广泛的应用。基于广域同步相量测量,设计了SMES控制器。估计模型被确定为一个耦合振动模型,用于检测和评估近似的区域间振荡模式。最后进行了仿真研究,验证了设计方法的适用性和有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Design of SMES Controller for Improving Stabilization of Interconnected Power System based on Synchronized Phasor Measurement
This paper presents the design of superconducting magnetic energy storage (SMES) controller for improving stabilization of interconnected power system based on synchronized phasor measurement. Load variations with abrupt changes occurring in a power system cause fluctuations of tie-line power flow and significantly disturb the effective use of transmission lines. As one of promising energy storage devices, SMES is applied for power system stabilization. SMES controller is designed based on the wide area synchronized phasor measurement. The estimated model is determined as a coupled vibration model for detection and assessment of an approximated inter-area oscillation mode. Finally, some simulation studies are carried out to demonstrate the applicability and effectiveness of the design method.
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