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Analysis of Hybrid Fuzzy Logic Control Based PID Through the Filter for Frequency Regulation of Electrical Power System with Real-Time Simulation

机译:利用实时仿真分析基于电力系统频率调节滤波器的混合模糊逻辑控制

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In the present study, a teaching learning based optimization (TLBO) method tuned hybrid fuzzy logic control based PID through the Filter (FPIDN) is proposed for frequency regulation of the electrical power system problem. The studied electrical power system contains the non-linearity parameters like governor dead band, time delay, and generation rate constraint. The performance of TLBO is analyzed by applying a genetic algorithm (GA) method. It is observed that TLBO outperforms compared with GA. Next, an investigation has been carried out by placing static synchronous series compensator in the tie-line. It is demonstrated that TLBO outperforms GA technique in controller design problem. To confirm the capability of the recommended method, experimental commendation with the hardware-in-the-loop real-time validation based on OPAL-RT has been implemented. Finally, the performance of TLBO tuned FPIDN controller is equated with some recently suggested frequency control problem in a standard two-area system. From the simulation outcome, it is established that the suggested plan offers better compared with existing methods.
机译:在本研究中,提出了一种基于教学的基于教学的优化(TLBO)方法通过滤波器(FPIDN)的PID基于过滤器(FPIDN),用于电力系统问题的频率调节。所研究的电力系统包含了总调节器死区,时间延迟和生成率约束的非线性参数。通过应用遗传算法(GA)方法来分析TLBO的性能。观察到与GA相比,TLBO优于胜度。接下来,通过将静态同步串联补偿器放在扎线中进行了研究。据证明TLBO优于控制器设计问题的GA技术。为了确认推荐方法的能力,已经实现了基于Opal-RT的循环硬件实时验证的实验表彰。最后,TLBO调谐FPIDN控制器的性能等于标准两区域系统中的一些最近建议的频率控制问题。从仿真结果来看,建议的计划与现有方法相比更好。

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