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Applying an intelligence-based adaptive multi-predictive control strategy to a two-area interconnected power system

机译:将基于智能的自适应多预测控制策略应用于两区域互联电力系统

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摘要

We look at a number of research works in the area of power system control to propose a novel strategy in line with the integration of intelligence-based techniques and also the adaptive multi-predictive control. In the strategy presented here, first of all, the one-area power system is represented, through sufficient mathematical relations, and subsequently the investigated outcomes are generalized to represent the two-area interconnected power system. Based on the proposed control strategy, namely IAMPCS in this investigation, the operating points of the two-area interconnected power system need to be represented through several linear models, where the best model of the system is accurately identified by an intelligent decision-maker mechanism at each instant of time. Hereinafter, an adaptive algorithm is instantly implemented on the chosen model to be efficient in the system representation and on the corresponding predictive control strategy, as well. In order to demonstrate the effectiveness of the proposed IAMPCS, the whole of simulation programs are carried out and the results are compared with those obtained using the single-model linear generalized predictive control, as well as the extended PI control schemes, as the benchmark one. The results verify the validity of the proposed control strategy in comparison with the previous approaches.
机译:我们着眼于电力系统控制领域的许多研究工作,以提出一种基于智能技术和自适应多预测控制相结合的新颖策略。在这里提出的策略中,首先,通过充分的数学关系表示一个区域的电力系统,然后将研究结果概括为代表两个区域的互连电力系统。基于提出的控制策略(即本研究中的IAMPCS),需要通过几个线性模型来表示两区域互连电力系统的工作点,其中通过智能决策者机制可以准确地确定系统的最佳模型在每个时刻。在下文中,在所选择的模型上立即实施自适应算法,以在系统表示以及相应的预测控制策略上有效。为了证明所提出的IAMPCS的有效性,进行了整个仿真程序,并将结果与​​以单模型线性广义预测控制以及扩展PI控制方案为基准的结果进行了比较。 。结果证明了与先前方法相比所提出的控制策略的有效性。

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