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Power system transient stability evaluation and decentralized coordinated control based on wide-area measurement system

机译:基于广域测量系统的电力系统暂态稳定评估与分散协调控制

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This paper proposes a decentralized coordinated scheme based on multi-agent structure by using wide-area measurements signals for the development of transient stability in large power system. First, the wide-area signal based state feedback decentralized coordinated controller is designed to enhance transient performance. Besides, intelligent agents are designed to have the capability of making an exact judgment for the stability of global system after the system has been suffered various disturbances. Then, modified equal area criterion (EAC) is employed for the transient stability evaluation of large systems in order to draft the rule of coordinated agent's start-up. Taking into account the time delays in wide area transmission and the impact from coupling among multi-machine and uncertainties, another task of this paper is to propose H∞ control method based on linearization interconnected model in the global power system stabilizer (GPSS). And the H∞ control problem is parameterized to linear matrix inequality (LMI) problem so as to solve feedback controller parameters. Finally, simulation studies on a multi-machine system demonstrate the effectiveness of the control scheme.
机译:本文提出了一种基于多智能体结构的分散式协调方案,利用广域测量信号来发展大型电力系统的暂态稳定性。首先,设计基于广域信号的状态反馈分散协调控制器,以增强瞬态性能。此外,智能代理被设计为具有在系统遭受各种干扰后对全局系统的稳定性做出准确判断的能力。然后,采用修正的等面积准则(EAC)进行大型系统的暂态稳定性评估,以起草协调代理启动的规则。考虑到广域传输的时延以及多机耦合和不确定性之间的影响,本文的另一任务是在全球电力系统稳定器(GPSS)中提出一种基于线性化互连模型的H∞控制方法。将H∞控制问题参数化为线性矩阵不等式(LMI)问题,以求解反馈控制器参数。最后,在多机器系统上的仿真研究证明了该控制方案的有效性。

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