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Design and Implementation of a Wide-Area Damping Controller Using High Voltage DC Modulation and Synchrophasor Feedback

机译:高压直流调制和同步相量反馈的宽域阻尼控制器的设计与实现

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This paper describes the design strategy and testing results of a control system to improve damping of inter-area oscillations in the western North American Power System (wNAPS) in order to maintain dynamic stability of the grid. Extensive simulation studies and actual test results on the wNAPS demonstrate significant improvements in damping of inter-area oscillations of most concern without reducing damping of peripheral oscillations. The design strategy of the control system features three novel attributes: (1) The feedback law for the control system is constructed using real-time measurements acquired from Phasor Measurement Units (PMUs) located throughout the power grid. (2) Control actuation is delivered by the modulation of real power flow through a High Voltage Direct Current (HVDC) transmission line. (3) A supervisory system, integrated into the control system is in charge of determining damping effectiveness, maintaining failsafe operation, and ensuring that no harm is done to the grid.
机译:本文介绍了一种控制系统的设计策略和测试结果,该控制系统可改善北美西部电力系统(wNAPS)区域间振荡的阻尼,从而保持电网的动态稳定性。在wNAPS上的大量仿真研究和实际测试结果表明,在不降低外围振荡的阻尼的情况下,最关注的区域间振荡的阻尼有了显着改善。控制系统的设计策略具有三个新颖的属性:(1)使用从遍布整个电网的相量测量单元(PMU)获取的实时测量值构建控制系统的反馈律。 (2)控制致动是通过调制通过高压直流(HVDC)传输线的有功功率来实现的。 (3)集成到控制系统中的监控系统负责确定阻尼效果,维持故障安全操作并确保不会对电网造成损害。

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