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Design of controllers for automatic frequency control of different interconnection structures composing of hybrid generator units using the chaotic optimization approach

机译:混沌优化方法对混合发生器单元不同互连结构的自动频率控制控制器的设计

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This paper deals with the determination of the proportional?integral?derivative (PID) parameters of automatic generation control (AGC) based on the chaotic optimization approach (COA). Unlike the literature approaches that are based on the usage of the classic objective function, in this paper, novel objective functions for determination of the optimal PID parameters are proposed and tested. The proposed algorithm was tested on different interconnection structures of two thermal generator units, a thermal generator unit and a photovoltaic system, and a multi generator system consisting of three generator units: thermal, hydro, and gas. Further, to prove the superiority of the proposed algorithm over many algorithms used in the literature, the transient performance of the AGC system was investigated. Various transient parameters, such as the settling time of the observed variables, the value of the objective function, and the overshoot, were considered in the analysis. Different robustness analysis tests were performed to validate the effectiveness of the proposed controller optimized through the COA against parametric variations, noise, and unstable mode of operation with negative damping. It was shown that the optimized PID controller outperformed other controllers proposed in the literature in terms of the analyzed criteria.
机译:本文根据混沌优化方法(COA)来涉及自动生成控制(AGC)的比例?积分(PID)参数的确定。与基于经典目标函数的使用的文献方法不同,在本文中,提出并测试了用于确定最佳PID参数的新客观函数。在两个热发电机单元,热发电机单元和光伏系统的不同互连结构上测试了所提出的算法,以及由三个发电机单元组成的多发电机系统:热,水电和气体。此外,为了在文献中使用的许多算法上证明所提出的算法的优越性,研究了AGC系统的瞬态性能。在分析中考虑了各种瞬态参数,例如观察到的变量的稳定时间,目标函数的值和过冲。进行不同的稳健性分析测试以验证所提出的控制器通过COA针对参数变化,噪声和不稳定的操作模式进行了优化的控制器的有效性,具有负阻尼。结果表明,在分析的标准方面,优化的PID控制器优于文献中提出的其他控制器。

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