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Wide-Area Damping Controller of FACTS Devices for Inter-Area Oscillations Considering Communication Time Delays

机译:考虑到通信时延的区域间振荡的FACTS器件的广域阻尼控制器

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The usage of remote signals obtained from a wide-area measurement system (WAMS) introduces time delays to a wide-area damping controller (WADC), which would degrade system damping and even cause system instability. The time-delay margin is defined as the maximum time delay under which a closed-loop system can remain stable. In this paper, the delay margin is introduced as an additional performance index for the synthesis of classical WADCs for flexible ac transmission systems (FACTS) devices to damp inter-area oscillations. The proposed approach includes three parts: a geometric measure approach for selecting feedback remote signals, a residue method for designing phase-compensation parameters, and a Lyapunov stability criterion and linear matrix inequalities (LMI) for calculating the delay margin and determining the gain of the WADC based on a tradeoff between damping performance and delay margin. Three case studies are undertaken based on a four-machine two-area power system for demonstrating the design principle of the proposed approach, a New England ten-machine 39-bus power system and a 16-machine 68-bus power system for verifying the feasibility on larger and more complex power systems. The simulation results verify the effectiveness of the proposed approach on providing a balance between the delay margin and the damping performance.
机译:从广域测量系统(WAMS)获得的远程信号的使用给广域阻尼控制器(WADC)带来了时间延迟,这将降低系统阻尼,甚至导致系统不稳定。时延裕度定义为闭环系统可以保持稳定的最大时延。在本文中,引入了延迟裕量作为附加性能指标,用于合成用于柔性交流传输系统(FACTS)器件的经典WADC,以抑制区域间振荡。提议的方法包括三个部分:用于选择反馈远程信号的几何测量方法,用于设计相位补偿参数的残差方法以及用于计算延迟余量和确定增益的Lyapunov稳定性准则和线性矩阵不等式(LMI)。 WADC基于阻尼性能和延迟裕度之间的权衡。基于四个机器的两区域电力系统(用于演示所提出的方法的设计原理),新英格兰的十机器的39总线电力系统和16机器的68总线电力系统来进行三个案例研究,以验证所提出方法的设计原理。在更大和更复杂的电源系统上的可行性。仿真结果验证了所提方法在延迟裕度和阻尼性能之间取得平衡的有效性。

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