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MOBA based design of FOPID-SSSC for load frequency control of interconnected multi-area power systems

机译:基于MOBA的FOPID-SSSC设计,用于互连多区域电力系统的负载频率控制

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Automatic Generation Control (AGC) has functionally controlled the interchange power flow in order to suppress the dynamic oscillations of frequency and tie-line power deviations as a perturbation occurs in the interconnected multi-area power system. Furthermore, Flexible AC Transmission Systems (FACTS) can effectively assist AGC to more enhance the dynamic stability of power system. So, Static Synchronous Series Compensator (SSSC), one of the well-known FACTS devices, is here applied to accurately control and regulate the load frequency of multi-area multi-source interconnected power system. The research and efforts made in this regard have caused to introduce the Fractional Order Proportional Integral Derivative (FOPID) based SSSC, to alleviate both the most significant issues in multi-area interconnected power systems i.e., frequency and tie-line power deviations. Due to multi-objective nature of aforementioned problem, suppression of the frequency and tie line power deviations is formularized in the form of a multi-object problem. Considering the high performance of Multi Objective Bees Algorithm (MOBA) in solution of the non-linear objectives, it has been utilized to appropriately unravel the optimization problem. To verify and validate the dynamic performance of self-defined FOPID SSSC, it has been thoroughly evaluated in three different multi-area interconnected power systems. Meanwhile, the dynamic performance of FOPID SSSC has been accurately compared with a conventional controller based SSSC while the power systems are affected by different Step Load Perturbations (SLPs). Eventually, the simulation results of all three power systems have transparently demonstrated the dynamic performance of FOPID SSSC to significantly suppress the frequency and tie-line power deviations as compared to conventional controller based SSSC.
机译:自动发电控制(AGC)在功能上控制了交流潮流,以抑制互连的多区域电力系统中发生扰动时频率和联络线功率偏差的动态振荡。此外,柔性交流输电系统(FACTS)可以有效地协助AGC进一步增强电力系统的动态稳定性。因此,静态同步串联补偿器(SSSC)是著名的FACTS装置之一,在这里用于精确控制和调节多区域多源互连电力系统的负载频率。在这方面的研究和努力已导致引入基于分数阶比例积分微分(FOPID)的SSSC,以减轻多区域互连电力系统中最重要的问题,即频率和联络线功率偏差。由于上述问题的多目标性质,以多目标问题的形式提出了对频率和联络线功率偏差的抑制。考虑到多目标Bees算法(MOBA)在解决非线性目标方面的高性能,已被用来适当地阐明优化问题。为了验证和验证自定义FOPID SSSC的动态性能,已在三种不同的多区域互连电源系统中对其进行了全面评估。同时,FOPID SSSC的动态性能已与基于常规控制器的SSSC进行了精确比较,而电力系统受到不同的阶跃负载扰动(SLP)的影响。最终,与基于常规控制器的SSSC相比,所有三个电源系统的仿真结果都透明地证明了FOPID SSSC的动态性能,可以显着抑制频率和联络线电源偏差。

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