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Impact of Communication Delay on Frequency Regulation in Hybrid Power System Using Optimized H-Infinity Controller

机译:优化H-Infinity控制器对混合动力系统中通信延迟对频率调节的影响

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摘要

A communication infrastructure is essential for safe monitoring and control of isolated hybrid power system. For the hybrid system, integration of different renewable resources is required, such as wind turbine generator, diesel engine generator, aqua-electrolyser, and fuel cell along with storage unit. However, impacts of communication delay on dynamic performance on the hybrid power system, mainly load frequency control have not been reported by researchers. This paper presents the impact of communication delay profile in isolated hybrid distributed generation (DG) system for minimization of frequency deviation profile. The communication delays are one of the major problems and always present in a system during transmission of signal from remote terminal unit to control centre to individual unit. The frequency control problem is addressed for the hybrid DG system with communication delay. The delay is modelled by the second-order Pade approximation method. Particle swarm optimization (PSO)-tuned H-infinity loop shaping controller is used in this study for minimization of frequency deviation profile and compared with genetic algorithm (GA)-tuned H-infinity loop shaping controller and proportional integral-tuned H-infinity controller for different load conditions and change in system parameters. Performance of controllers is also validated with introducing nonlinearities in the system, such as generation rate constraints, time varying delay, and uncertainties. The results show that frequency deviation in presence of delay is found to be minimum for controller design by PSO-tuned H-infinity loop shaping of controller.
机译:通信基础设施对于安全监控隔离的混合动力系统至关重要。对于混合动力系统,需要整合不同的可再生资源,例如风力涡轮发电机,柴油发动机发电机,水电解池,燃料电池以及存储单元。然而,研究人员尚未报道通信延迟对混合动力系统动态性能的影响,主要是负载频率控制。本文介绍了通信延迟曲线在隔离式混合分布式发电(DG)系统中对最小化频率偏差曲线的影响。通信延迟是主要问题之一,并且在从远程终端单元到控制中心到各个单元的信号传输期间始终存在于系统中。解决了具有通信延迟的混合式DG系统的频率控制问题。延迟是通过二阶Pade逼近方法建模的。本研究中使用粒子群优化(PSO)调整的H无限环路整形控制器,以最小化频率偏差曲线,并与遗传算法(GA)调整的H无限环路整形控制器和比例积分调整的H无限控制器进行了比较用于不同的负载条件和系统参数的更改。控制器的性能也通过在系统中引入非线性来验证,例如发电速率约束,时变延迟和不确定性。结果表明,通过PSO调整的控制器的H-infinity环路整形,发现存在延迟的频率偏差对于控制器设计而言是最小的。

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