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Effect Of communication delay on load frequency control application in autonomous hybrid power system

机译:通信延迟对自主混合动力系统负载频率控制应用的影响

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In wide area monitoring and control application, a time delay is introduced in the system while transmitting the control signal from control center to remote terminal unit. This paper presents the effect of communication delay on load frequency regulation in autonomous hybrid power system. An autonomous hybrid power system consisting of conventional thermal power system (TPS) integrated to distributed generation (DG) resources is considered. The DG system forms a combination of wind turbine generators (WTG), diesel engine generators (DEGs), fuel cell (FC), aqua-electrolyzer (AE) and battery energy storage system (BESS). Due to intermittent power output from wind generation, its combination in system leads to frequency and power mismatch. A robust H-infinity controller based on particle swarm optimization (PSO) and genetic algorithm (GA) is presented to maintain the frequency deviation profile. Robustness of controller is verified with different load conditions and parameter variation scenario. Simulation results show that PSO based H-infinity loop shaping controller achieves minimum frequency deviation compared to other controllers.
机译:在广域监视和控制应用中,系统中引入了时间延迟,同时将控制信号从控制中心传输到远程终端单元。本文介绍了通信延迟对自主混合动力系统中负载频率调节的影响。考虑了一种自治混合动力系统,该系统由集成到分布式发电(DG)资源的常规火电系统(TPS)组成。 DG系统构成了风力涡轮发电机(WTG),柴油发动机发电机(DEG),燃料电池(FC),水电解池(AE)和电池能量存储系统(BESS)的组合。由于风力产生的功率输出是间歇性的,因此其在系统中的组合会导致频率和功率不匹配。提出了一种基于粒子群算法(PSO)和遗传算法(GA)的鲁棒H-∞控制器,以保持频率偏差曲线。在不同的负载条件和参数变化情况下验证了控制器的鲁棒性。仿真结果表明,与其他控制器相比,基于PSO的H-infinity环路整形控制器可实现最小的频率偏差。

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