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Design of an Optimized Fractional High Order Differential Feedback Controller for Load Frequency Control of a Multi-Area Multi-Source Power System With Nonlinearity

机译:非线性多区域多源电力系统负载频率控制优化的分数高阶差分反馈控制器的设计

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摘要

Load frequency control (LFC) is one of the essential process in interconnected power systems. To provide high quality, reliable and stable electrical power, designed controller should perform satisfactorily, i.e. suppress area frequency and tie-line power deviations. Within this scope, in this study, a high order differential feedback controller (HODFC) and a developed fractional high order differential feedback controller (FHODFC) are proposed for LFC problem in multi-area power systems for the first time. The gains of the HODFC and FHODFC are optimally tuned by particle swarm optimization (PSO) algorithm aiming to minimize integral of time weighted absolute error (ITAE) performance index. The superiority of the developed FHODFC are verified by comparing reported controller structures in the recent state-of-the-art literature and HODFC for two identical non-reheat thermal power system and two-area multi-source power system consisting of gas, thermal and hydro generation units with/without consideration of HVDC link. To test the robustness of the designed controllers, varying system parameters and loading conditions are investigated. The governor dead band (GDB) and generation rate constraint (GRC) limitations are also considered for the system under study to examine non-linearity handling success of the proposed controllers. Performance results indicate that the developed FHODFC provides better dynamic response and robustness than other published techniques under nonlinearities, random load pattern, and variations in system parameters and loading conditions.
机译:负载频率控制(LFC)是互联电力系统的必备过程之一。为提供高质量,可靠且稳定的电力,设计的控制器应令人满意地执行,即抑制区域频率和扎线功率偏差。在此范围内,在本研究中,首次提出了一种高阶差分反馈控制器(HODFC)和发达的分数高阶差分反馈控制器(FHODFC),首次为多区域电力系统中的LFC问题提出。 HODFC和FHODFC的增益通过粒子群优化(PSO)算法进行了最佳调整,其目的是最大限度地减少加权绝对误差(ITAE)性能索引的积分。通过比较最近的最新的文献和HodFC的报告的控制器结构,为两个相同的非再热动力系统和由气体,热和热量组成的两区域多源功率系统进行了验证了开发的FHODFC的优越性。水力生成单位/不考虑HVDC链路。为了测试所设计的控制器的稳健性,研究了不同的系统参数和装载条件。监管死区(GDB)和生成率约束(GRC)限制也被认为是在研究中的系统中,以检查所提出的控制器的非线性处理成功。性能结果表明,开发的FHODFC提供比非线性下的其他公布技术更好的动态响应和鲁棒性,以及系统参数和装载条件的变化。

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