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Stability Delay Margin Computation of Load Frequency Control System with Demand Response

机译:需求响应负载频率控制系统的稳定性延迟保证金计算

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This paper investigates the impact of dynamic demand response (DR) loop including a communication time delay on the stability delay margin of a single-area load frequency control (LFC) system considering both gain and phase margins (GPMs). A gain-phase margin tester (GPMT) is added to the DR loop of the LFC system as to include GPMs in the calculation of stability delay margins. A direct method in the frequency-domain is employed to compute stability delay margins in terms of system and controller parameters. For a large range of proportional - integral (PI) controller parameters, time delays for which LFC system with DR loop is both stable and has required stability margin quantified by GPMs are determined. Simulation results that delay margins should be computed by taking into account of both gain and phase margins to achieve faster damping of oscillations, less overshoot and settling time.
机译:本文研究了考虑到增益和相位利基(GPMS)的单面积负载频率控制(LFC)系统的稳定延迟裕度,包括通信时间延迟的动态需求响应(DR)环路的影响。增益相位裕度测试仪(GPMT)被添加到LFC系统的DR环路中,以包括GPMS在计算稳定性延迟边缘的计算中。使用频域中的直接方法以计算系统和控制器参数的稳定延迟边缘。对于大量比例 - 积分(PI)控制器参数,LFC系统具有DR循环的时间延迟均稳定,并且确定了通过GPMS量化的所需稳定性余量。仿真结果通过考虑到增益和相位利润来计算延迟边距,以实现更快的振荡阻尼,较少过冲和稳定时间。

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