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PSO optimized PV-wind-battery system for satisfying the electrical needs of a remote area

机译:PSO优化的PV-风电池系统,用于满足偏远地区的电气需求

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With the growing interest in harnessing renewable energy resources because of their natural availability, clean and inexhaustible nature, a hybrid energy system employing renewable energy sources offers an attractive option to meet the electrical demands of remotely located locations. The main focus of this study is to find the optimal system configuration for satisfying the load demand of a cluster of villages located in a remote district of Uttarakhand, India using the available solar and wind resources in the region. A methodology based on particle swarm optimization (PSO) is adopted for optimal sizing of the system. Various system configurations are examined and compared among themselves considering total system cost and cost of energy (COE). According to the study results, the hybrid photovoltaic (PV)-wind-battery system appear cost effective as compared to standalone PV-battery and Wind-battery systems having lowest total system cost of Rs.7.72 lakh and COE of Rs. 18.47. Hence, the hybrid integration of PV-wind-battery system is most techno-economically viable option for the case study area.
机译:随着由于其自然可用性,清洁和取之不竭性的性质,利用可再生能源的利益越来越令人利益,采用可再生能源的混合能源系统提供了一种有吸引力的选择,以满足远程位于远程位置的电气需求。本研究的主要焦点是找到满足位于印度北方地区北方村庄群体群体的负荷需求的最佳系统配置,采用该地区的可用太阳能和风力资源。采用基于粒子群优化(PSO)的方法进行了最佳尺寸的系统。检查各种系统配置,并考虑到总系统成本和能量成本(COE)。根据该研究结果,与独立的PV电池和风电池系统相比,混合光伏(PV)-Wind-电池系统出现了成本效益,其具有最低总系统成本为7.72万卢比和卢比的COE。 18.47。因此,PV-风电池系统的混合集成是案例研究区域的最佳技术 - 经济上可行的选择。

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