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Impact of communication time delays on combined LFC and AVR of a multi-area hybrid system with IPFC-RFBs coordinated control strategy

机译:具有IPFC-RFB协调控制策略的多区混合系统组合LFC和AVR组合LFC和AVR的影响

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In this paper, the impact of communication time delays (CTDs) on combined load frequency control (LFC) and automatic voltage regulation (AVR) of a multi-area system with hybrid generation units is addressed. Investigation reveals that CTDs have significant effect on system performance. A classical PID controller is employed as a secondary regulator and its parametric gains are optimized with a differential evolution - artificial electric field algorithm (DE-AEFA). The superior performance of the presented algorithm is established by comparing with various optimization algorithms reported in the literature. The investigation is further extended to integration of redox flow batteries (RFBs) and interline power flow controller (IPFC) with tie-lines. Analysis reveals that IPFC and RFBs coordinated control enhances system dynamic performance. Finally, the robustness of the proposed control methodology is validated by sensitivity analysis during wide variations of system parameters and load.
机译:在本文中,寻址通信时间延迟(CTDS)对具有混合生成单元的多区域系统的组合负载频率控制(LFC)和自动电压调节(AVR)的影响。 调查显示,CTD对系统性能有显着影响。 经典PID控制器作为辅助调节器,其参数增益用差分演进 - 人造电场算法(DE-AEFA)进行了优化。 通过与文献中报道的各种优化算法进行比较建立所提出的算法的优越性。 调查进一步扩展到氧化还原流量电池(RFB)和与扎带线相互作用的相互整合。 分析表明,IPFC和RFBS协调控制增强了系统动态性能。 最后,通过在系统参数和负载的广泛变体中进行灵敏度分析,验证了所提出的控制方法的稳健性。

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