电力系统
控制理论(社会学)
网络拓扑
控制器(灌溉)
控制工程
自动频率控制
工程类
柔性交流输电系统
计算机科学
晶闸管
观察员(物理)
电压
功率(物理)
控制(管理)
电气工程
物理
农学
操作系统
人工智能
生物
量子力学
功率流
作者
Thanh Ngoc Pham,Hieu Trinh,Le Van Hien
标识
DOI:10.1109/tsg.2015.2449877
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.
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