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Networked Control of Electric Vehicles for Power System Frequency Regulation with Random Communication Time Delay

机译:具有随机通信时延的电力系统调频电动汽车的网络控制

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Electric vehicles (EVs) can have noteworthy impact on power system dynamic performance. This paper develops two novel controllers which can take into account the random time delay in the communication channel of the control system. With the designed robust controller, the system can utilize EVs to participate in automatic generation control (AGC) processes so as to assist conventional thermal power units to respond rapidly and accurately to load fluctuations, as well as to enhance the capability of a power system to accommodate renewable energy forms such as wind power. Owing to the distributed nature of EVs, a networked control scheme for EVs’ participation in frequency regulation is first proposed in the paper. A closed-loop block diagram, which incorporates EVs and wind power, is then developed. Two controllers are then designed based on rigorous linear matrix inequalities (LMI) theory to ensure the robustness and stability of the system. Finally, comprehensive case studies based on a two-area equivalent of the IEEE 39-bus test system are performed to demonstrate the effectiveness of the proposed methods.
机译:电动汽车(EV)会对电力系统的动态性能产生显着影响。本文开发了两种新颖的控制器,它们可以考虑控制系统通信通道中的随机时间延迟。借助设计可靠的控制器,系统可以利用电动汽车参与自动发电控制(AGC)过程,从而协助常规火力发电设备快速准确地响应负载波动,并增强电力系统的能力,容纳风力等可再生能源形式。由于电动汽车的分布式特性,本文首先提出了一种电动汽车参与频率调节的网络控制方案。然后,开发了一个包含电动汽车和风力发电的闭环框图。然后根据严格的线性矩阵不等式(LMI)理论设计两个控制器,以确保系统的鲁棒性和稳定性。最后,进行了基于等效于IEEE 39总线测试系统的两个区域的综合案例研究,以证明所提出方法的有效性。

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