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Optimal and suboptimal linear regulator design of AGC for two area interconnected power system

机译:两区域互联电力系统AGC最优和次优线性调节器设计

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This paper presents an AGC optimal regulator utilizing feedback control method which is designed for two area interconnected power system. In the proposed paper, power systems with the same steam power plants including non-reheat steam turbines which are connected together parallel through AC/DC lines, have been studied. It is notable that, the problem of formulating an optimal AGC is to solve non-linear matrix equations, which needs appropriate calculating techniques in order to find a high speed and accurate solution. Meanwhile, to design an AGC optimal regulator, monitoring of all system state variables is needed which probably is not economical and also some of the state variables are not measurable practically. Due to mentioned problems an AGC sub-optimal regulator based on the feedback control method using system states which are easy to measure is presented in this paper and dynamic performance of the power system with AGC optimal and suboptimal regulator implementation and in more than 1% disturbance in one of the areas has been studied and system dynamic response using both regulators (optimal and suboptimal) has been probed and compared with each other.
机译:本文提出了一种利用反馈控制方法的AGC最优调节器,该调节器是为两区域互联电力系统设计的。在提出的论文中,已经研究了具有相同蒸汽发电厂的电力系统,包括通过AC / DC线路并联在一起的非再热蒸汽轮机。值得注意的是,制定最优AGC的问题是求解非线性矩阵方程,这需要适当的计算技术才能找到一个快速,准确的解决方案。同时,为了设计AGC最佳调节器,需要监视所有系统状态变量,这可能不经济,而且某些状态变量实际上无法测量。由于存在上述问题,本文提出了一种基于反馈控制方法的AGC次优调节器,该反馈控制方法使用易于测量的系统状态,并且采用AGC最优和次优调节器实现且大于1%的电力系统的动态性能。已经研究了其中一个区域的扰动,并探讨了使用两个调节器(最佳和次最佳)的系统动态响应,并将其相互比较。

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