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Comparative performance assessment of a novel quasi-oppositional harmony search algorithm and internal model control method for automatic generation control of power systems

机译:电力系统自动发电控制的新型准对位和谐搜索算法与内模控制方法的比较性能评估

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摘要

This initiative work addresses the comparative performance assessment of a novel quasi-oppositional harmony search (QOHS) algorithm and internal model control (IMC) method, in the environment of automatic generation control. These two techniques are applied to a single-area non-reheat and reheat turbine with and without droop characteristic, and four-area hydro-thermal interconnected power system under various operating conditions. Later on, robustness analysis of both the two test systems is carried out by varying the speed regulating parameters, time constants of governor, turbine, power system and the gain of power system in the range of ±50% in case of single-area test system. In four-area test system, the same is carried out with the consonance of step load perturbation in different control area at distinct time-interval. Simulation results show that the proposed QOHS algorithm offers better dynamic control with robust performance as compared with IMC based approach. For on-line, off-nominal operating conditions, fast acting Sugeno fuzzy logic (SFL) is applied to obtain on-line dynamic responses of the studied power system model. Moreover, time-domain simulation of the investigated four-area test system reveals that the proposed QOHS-SFL based intelligent controller yields on-line, off-nominal controller parameters, resulting in on-line optimal dynamic response profile.
机译:这项主动工作致力于在自动发电控制的环境下,对新型准对位和谐搜索(QOHS)算法和内部模型控制(IMC)方法进行比较性能评估。这两种技术分别应用于具有和不具有下垂特性的单区域非再热和再热涡轮机,以及在各种运行条件下的四区域水热互连电力系统。随后,在单区域测试的情况下,通过将调速参数,调速器,涡轮机,动力系统的时间常数以及动力系统的增益变化在±50%的范围内,对两个测试系统进行鲁棒性分析。系统。在四区域测试系统中,在不同的控制时间间隔内,不同控制区域中的阶跃负载扰动相辅相成。仿真结果表明,与基于IMC的方法相比,本文提出的QOHS算法具有更好的动态控制性能和鲁棒性。对于在线,非标称运行条件,应用快速作用的Sugeno模糊逻辑(SFL)获得所研究的电力系统模型的在线动态响应。此外,对所研究的四区域测试系统进行时域仿真显示,基于QOHS-SFL的智能控制器可产生在线,非标称控制器参数,从而产生在线最佳动态响应曲线。

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