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A hybrid grey wolf optimisation and pattern search algorithm for automatic generation control of multi-area interconnected power systems

机译:用于多区域互联电力系统的自动生成控制的混合灰狼优化和模式搜索算法

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A hybrid grey wolf optimisation-pattern search ( h GWO-PS) algorithm has been proposed to optimise the parameters of two degree of freedom-proportional integral derivative (2DOF-PID) controllers in multi-area power systems for automatic generation control. The integral of time multiplied by absolute error (ITAE) has been considered as an objective function in the present work. Firstly, this algorithm has been applied to a two-area non-reheat thermal power system; secondly, the analysis of ITAE, dynamic responses and robustness of the same has also been carried out. The dynamic behaviour of the system optimised by the proposed approach hardly alters with the broad changes in the load and system parameters within the range [−50%, +50%]. The proposed algorithm has also been applied extensively to a three-area hydro-thermal power system with appropriate generation rate constraints (GRC). The simulation results show that the proposed algorithm performs better when compared with recently published approaches in terms of less ITAE value, settling time, overshoot and faster system ability to return at zero frequency and tie line power deviations.
机译:已经提出了一种混合灰狼优化模式搜索(H GWO-PS)算法,以优化多区域电力系统中的两度自由度积分衍生(2DOF-PID)控制器的参数,用于自动生成控制。通过绝对误差(ITAE)乘以绝对误差(ITAE)的积分被认为是目前工作中的目标函数。首先,该算法已应用于两扇区非再热动力系统;其次,也进行了对ITAE的分析,相同的动态响应和鲁棒性。由所提出的方法优化的系统的动态行为几乎没有改变负载和系统参数的广泛变化[-50%,+ 50%]。该算法也已广泛应用于具有适当产生速率约束(GRC)的三面水力热电力系统。仿真结果表明,与最近发表的迭代值,稳定时间,过冲和更快的系统能力相比,该算法与最近发表的方法相比,在零频率和扎带线功率偏差返回的速度较小。

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