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Hybrid Energy Storage Systems for Voltage Stabilization in Shipboard Microgrids

机译:用于舰船微电网稳定电压的混合储能系统

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Due to increasing environmental concerns associated with the fossil fuel consumption and greenhouse emissions by marine vessels, world is moving towards sustainable energy resources such as solar, wind and so on. Renewable energy sources are found out to be a significant source of energy as they are sustainable and clean as compared to traditional generation sources, for instance, the burning of fossil fuels, diesel generators, steam engines, etc. As solar energy is one of the cheapest, abundant and cleanest source of energy, therefore, it has the potential to be the most utilized source of energy along with energy storage systems (ESS) for future yachts and ferries. However, partial shading effect and intermittent nature of photovoltaic (PV) systems cause fluctuations in voltage that can potentially disturb the voltage profile, therefore may instigate instability in shipboard microgrids, if not properly managed. This paper, therefore, proposes a hybrid energy storage system (HESS) comprising of Lithium-ion (Li-ion) battery and ultra-capacitor having the capability to mitigate fluctuations caused by the partial shading effect in PV panels. The control system is based on frequency sharing approach in which high-frequency components are handled by the ultra-capacitor whereas low-frequency components are handled by the Li-ion battery. The proposed methodology is simulated using MATLAB/ SINULINK and various scenarios of power sharing are highlighted for the validation of the proposed scheme.
机译:由于与海洋化石燃料消耗和温室气体排放相关联的环境问题日益引起人们的关注,世界正朝着可持续能源发展,例如太阳能,风能等。可再生能源被发现是一种重要的能源,因为与传统的发电相比,可再生能源具有可持续性和清洁性,例如燃烧化石燃料,柴油发电机,蒸汽机等。太阳能是其中的一种。因此,它具有最便宜,最丰富和最清洁的能源,并有可能成为未来游艇和渡轮的能源利用最广泛的能源以及储能系统(ESS)。但是,部分遮蔽效应和光伏(PV)系统的间歇性特性会导致电压波动,从而可能会干扰电压曲线,因此,如果管理不当,可能会导致船上微电网不稳定。因此,本文提出了一种混合动力储能系统(HESS),该系统由锂离子(Li-ion)电池和超级电容器组成,具有减轻PV面板中部分遮蔽效应引起的波动的能力。该控制系统基于频率共享方法,其中高频成分由超级电容器处理,而低频成分由锂离子电池处理。使用MATLAB / SINULINK对提出的方法进行了仿真,并重点介绍了各种功率共享方案,以验证提出的方案。

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