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Experimental Testing of a Real-Time Implementation of a PMU-Based Wide-Area Damping Control System

机译:实验测试对基于PMU的广域阻尼控制系统的实时实现

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摘要

The modern power grid is being used under operating conditions of increasing stress, giving rise to grid stability issues. One of these stability issues is the phenomenon of inter-area oscillations. Simulations have demonstrated the advantages of Wide-area Measurement Signals (WAMS)-based Oscillation Damping Controls in achieving improved electromechanical mode damping compared to traditional, local signal-based Power System Stabilizers (PSS). This work takes an existing Phasor-based oscillation damping (POD) algorithm and uses it to implement a proof-of-concept, wide-area, real-time controller on National Instruments hardware. The developed prototype is tested in a real-time Hardware-in-the-loop setup (RT-HIL) using OPAL-RT & x2019;s eMEGASIM real-time simulation platform and synchrophasor data from actual Phasor Measurement Units (PMUs). The prototype and experiments provide insight into the feasibility and real-world limitations of wide-area controls. Further, it is demonstrated how the proposed control architecture has applications independent of the controlled power system device. Challenges faced, the solutions implemented together with the present prototype & x2019;s limitations are also discussed.
机译:现代电网正在越来越强应力的运行条件下使用,从而产生网格稳定性问题。这些稳定性问题中的一个是区域间振荡的现象。仿真已经证明了与传统的局部信号的电力系统稳定器(PSS)相比实现了改进的机电模式阻尼的广域测量信号(WAMS)的振荡阻尼控制的优点。这项工作采用现有的基于相量的振荡阻尼(POD)算法,并使用它来实现国家仪器硬件上的概念验证,广域实时控制器。使用Opal-RT&X2019; SEMEGASIM实时仿真平台和来自实际相量测量单位(PMU)的同步素数据,在实时硬件循环设置(RT-HIL)中测试开发的原型。原型和实验提供了对广域控制的可行性和实际限制的洞察。此外,证明了所提出的控制架构如何与受控电力系统设备无关的应用。面临的挑战,还讨论了与本地原型和X2019的解决方案。

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