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Load Frequency Control of Power Systems With Electric Vehicles and Diverse Transmission Links Using Distributed Functional Observers

机译:具有分布式功能观测器的电动汽车和不同传输链路的电力系统的负载频率控制

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摘要

This paper presents a load frequency control scheme using electric vehicles (EVs) to help thermal turbine units to provide the stability fluctuated by load demands. First, a general framework for deriving a state-space model for general power system topologies is given. Then, a detailed model of a four-area power system incorporating a smart and renewable discharged EVs system is presented. The areas within the system are interconnected via a combination of alternating current/high voltage direct current links and thyristor controlled phase shifters. Based on some recent development on functional observers, novel distributed functional observers are designed, one at each local area, to implement any given global state feedback controller. The designed observers are of reduced order and dynamically decoupled from others in contrast to conventional centralized observer (CO)-based controllers. The proposed scheme can cope better against accidental failures than those CO-based controllers. Extensive simulations and comparisons are given to show the effectiveness of the proposed control scheme.
机译:本文提出了一种使用电动汽车(EV)的负载频率控制方案,以帮助热电涡轮机提供因负载需求而波动的稳定性。首先,给出了用于推导通用电力系统拓扑的状态空间模型的通用框架。然后,提出了结合了智能和可再生排放电动汽车系统的四区域电力系统的详细模型。系统内的区域通过交流/高压直流链路和晶闸管控制的移相器相互连接。基于功能观察者的一些最新发展,在每个局部区域设计了新颖的分布式功能观察者,以实现任何给定的全局状态反馈控制器。与传统的基于集中式观察器(CO)的控制器相比,所设计的观察器具有降低的阶数,并且可以动态地彼此分离。与那些基于CO的控制器相比,该方案可以更好地应对意外故障。大量的仿真和比较表明了所提出的控制方案的有效性。

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