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Stability analysis of networked control in smart grids

机译:智能电网中网络控制的稳定性分析

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摘要

A suitable networked control scheme and its stability analysis framework have been developed for controlling inherent electromechanical oscillatory dynamics observed in power systems. It is assumed that the feedback signals are obtained at locations away from the controller/actuator and transmitted over a communication network with the help of phasor measurement units (PMUs). Within the generic framework of networked control system (NCS), the evolution of power system dynamics and associated control actions through a communication network have been modeled as a hybrid system. The data delivery rate has been modeled as a stochastic process. The closed-loop stability analysis framework has considered the limiting probability of data dropout in computing the stability margin. The contribution is in quantifying allowable data-dropout limit for a specified closed loop performance. The research findings are useful in specifying the requirement of communication infrastructure and protocol for operating future smart grids.
机译:已经开发了一种合适的网络控制方案及其稳定性分析框架,用于控制在电力系统中观察到的固有的机电振荡动力学。假定反馈信号是在远离控制器/执行器的位置获得的,并借助于相量测量单元(PMU)在通信网络上传输。在网络控制系统(NCS)的通用框架内,电力系统动力学的演变以及通过通信网络进行的相关控制动作已被建模为混合系统。数据传输速率已被建模为随机过程。闭环稳定性分析框架在计算稳定性裕度时已考虑了数据丢失的限制概率。其作用在于量化指定闭环性能的允许数据丢失限制。该研究结果对于指定操作未来智能电网的通信基础设施和协议的要求很有用。

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