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首页> 外文期刊>International journal of electrical power and energy systems >Robust H-infinite loop shaping controller based on hybrid PSO and harmonic search for frequency regulation in hybrid distributed generation system
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Robust H-infinite loop shaping controller based on hybrid PSO and harmonic search for frequency regulation in hybrid distributed generation system

机译:基于混合PSO和谐波搜索的鲁棒H无限环整形控制器,用于混合分布式发电系统中的频率调节

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This paper presents a study on frequency regulation in isolated hybrid distributed generation (DC) system. The hybrid DG system consists of wind turbine generator (WTG), photovoltaic (PV), aqua-electro-lyzer (AE), fuel cell (FC) and diesel engine generator (DEC) along with storage like flywheel energy storage system (FESS), battery energy storage system (BESS) and ultra-capacitor (UC). H-infinite loop shaping based on particle swarm optimization (PSO) as well as hybrid particle swarm optimization and harmonic search (PSOHS) controller is proposed to minimize the frequency deviation. The controller performance is analyzed under wide-band range of wind speed based on Van-der Hoven model, random load demand and non-linear solar-radiation variation which are considered as disturbances into the system. Also, the controller robustness is tested for changes in parameter up to ±30% of its nominal value. The simulated results under different operating scenarios demonstrate minimum frequency deviation in hybrid system, being achieved by the proposed controllers with use of UC as storage combination along with FESS in comparison to a simple PSO tuned PID controller.
机译:本文对隔离式混合分布式发电(DC)系统中的频率调节进行了研究。混合式DG系统由风力涡​​轮发电机(WTG),光伏(PV),水电解池(AE),燃料电池(FC)和柴油发动机发电机(DEC)以及类似飞轮储能系统(FESS)的储能系统组成,电池储能系统(BESS)和超级电容器(UC)。提出了一种基于粒子群优化(PSO),混合粒子群优化与谐波搜索(PSOHS)控制器的H无限环整形方法,以减小频率偏差。基于范德霍芬模型,在随机负载需求和非线性太阳辐射变化(被视为对系统的干扰)的基础上,分析了宽带风速下的控制器性能。此外,还测试了控制器的鲁棒性,以检查参数变化是否高达其标称值的±30%。与简单的PSO调谐PID控制器相比,通过使用UC作为存储组合以及FESS的拟议控制器实现了在不同操作方案下混合系统中最小的频率偏差。

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