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Design of wide-area power system damping controllers resilient to communication failures

机译:广域电力系统阻尼控制器的设计弹性通信故障

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Summary form only given. Recent research has demonstrated that wide-area signals obtained using synchronized phasor measurements could be more effective than local signals in damping inter-area oscillations in large interconnected systems. To transmit wide-area signals for use in controls, communication systems are required. Communication systems are vulnerable to disruptions as a result of which the reliability of the power system could be jeopardized. In order to counteract communication failures, resiliency could be built in either the communication system or the physical system. In this paper an approach is developed to build resiliency in grid controls in the physical system. The resiliency is achieved by robustly designing a novel redundant two-input single-output (TISO) supplementary damping controller (SDC) associated with a static VAr compensator (SVC) that utilizes both a wide-area signal and a local signal to guarantee that the system is stabilized if the wide-area signal is lost. Numerical tests on the IEEE 50-generator test system have demonstrated that the proposed SDC is effective in stabilizing the system and improving grid control resiliency in response to communication failures.
机译:摘要表格仅给出。最近的研究表明,使用同步相位测量获得的广域信号可能比在大型互连系统中阻尼区域间振荡中的局部信号更有效。为了传输用于控制的广域信号,需要通信系统。由于该通信系统容易受到破坏的结果,因此电力系统的可靠性可能被危及。为了抵消通信故障,可以建立在通信系统或物理系统中的弹性。在本文中,开发了一种方法,可以在物理系统中构建网格控制中的弹性。通过强大地设计与静态VAR补偿器(SVC)相关联的新型冗余二输入单输出(TISO)补充阻尼控制器(SDC)来实现弹性,该补偿器(SVC)利用广域信号和本地信号来保证如果广域信号丢失,系统会稳定。 IEEE 50发生器测试系统的数值测试表明,所提出的SDC有效地稳定系统并响应于通信故障而改善电网控制弹性。

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