首页> 外文期刊>Renewable & Sustainable Energy Reviews >Off-grid solar photovoltaic/hydrogen fuel cell system for renewable energy generation: An investigation based on techno-economic feasibility assessment for the application of end-user load demand in North-East India
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Off-grid solar photovoltaic/hydrogen fuel cell system for renewable energy generation: An investigation based on techno-economic feasibility assessment for the application of end-user load demand in North-East India

机译:用于可再生能源生成的离网太阳能光伏/氢气燃料电池系统:基于技术经济可行性评估的终端用户负荷需求在东北印度

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摘要

In this paper, an optimal off-grid solar photovoltaic (PV)/hydrogen fuel cell (FC) (HFC) based energy system is proposed for renewable energy generation to supply electricity to the end-user load demand in north-east (NE) Indian states. The energy system is modeled and simulated in the HOMER software. The monthly average global horizontal solar radiation (GHSR) and ambient temperature of the NE states are found to be 3.95-4.79 kWh/m(2) and 12.9-25.3 degrees C, respectively. The synthesized typical AC electrical load profile of 10 kWp is assumed to have a scaled daily annual mean value equal to 138 kWh/d and an average base demand value equal to 5.75 kW. With the considered connected load, the available GHSR and ambient temperature, the optimal sizes of renewable energy components for the considered eight geographical locations (latitude: 23 degrees 30'-27 degrees 3' North, longitude: 88 degrees 37'-94 degrees 7' East) are determined based on the minimum levelized cost of energy (COE) and lowest net present cost (NPC). The optimal system architecture range obtained is 110-120 kW PV array, 10-15 kW FC, 30-60 kW electrolyzer, 40-60 kg hydrogen tank capacity and 15 kW converter. Based on optimization results, the levelized COE and NPC range obtained are 0.509-0.689 $/kWh and $ 3,27,557-4,43,004, respectively, which confirm the cost-effectiveness of the proposed optimal energy system. Besides, with a renewable fraction of 100%, the electricity generated by the PV/HFC system satisfied the load demand and produced excess electricity with capacity factor found to be 16.4-31.2% in all the NE Indian states. Moreover, the optimized electrical profile, PV profile, inverter profile, and hydrogen production from an FC are compared and analyzed in terms of monthly average and annualized values for all the NE states. Also, the range of net hydrogen produced by the electrolyzer over the year obtained is 1538-1856 kg/yr.
机译:本文提出了一种最佳的离网太阳能光伏(PV)/氢气燃料电池(FC)的能量系统,用于可再生能源发电,为东北部(NE)的最终用户负荷需求供电印度国家。能量系统在荷马软件中进行建模和模拟。每月平均全球水平太阳辐射(GHSR)和NE状态的环境温度分别为3.95-4.79千瓦时/ m(2)和12.9-25.3摄氏度。假设10kWP的合成典型的AC电负载曲线具有等于138千瓦时/ D的缩放日期平均值,平均基本需求值等于5.75千瓦。随着所考虑的连接负载,可用的GHSR和环境温度,可再生能源组件的最佳尺寸为八个地理位置(纬度:23度30'-27度3'北,经度:88度37'-94度7 “东部”是基于最小能量(COE)和最低净额成本(NPC)的最小级别成本确定。获得的最佳系统架构范围是110-120千瓦PV阵列,10-15千瓦FC,30-60千瓦电解槽,40-60千克氢罐容量和15千瓦转换器。基于优化结果,所获得的稳定COE和NPC范围分别为0.509-0.689美元,分别为3,27,557-4,43,004美元,确认了所提出的最佳能源系统的成本效益。此外,随着可再生的一部分100%,PV / HFC系统产生的电力满足负载需求,并产生多余的电力,其中包含所有NE印度国家的容量因数为16.4-31.2%。此外,比较了优化的电气轮廓,PV轮廓,逆变器轮廓和来自FC的氢气,并根据所有NE状态的月平均值和年化值分析。此外,所获得的电解槽产生的净氢范围是1538-1856 kg / yr。

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