小型独立光伏储氢系统的经济性分析

N. Nordin, Hasimah Abdul Rahman
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引用次数: 0

摘要

本文提出了获得单机光伏系统最优尺寸的设计步骤,使其能够满足预定的电力负荷要求。系统规模的关键主要是满足特定的负载需求,这取决于安装的光伏系统产生的电力,也要保持氢气的储存状态。案例研究使用吉隆坡的气象数据和典型的农村地区负荷概况为2.215千瓦时。为了确定系统的可行性,对系统进行了经济分析。拟议系统的平准化能源成本为1.98令吉/千瓦时。结果表明,在相同配置下,采用AGM电池作为备用电源,系统成本和能量平准化成本较低。因此,对电解槽和燃料电池效率对所提出系统的平准化能源成本进行了敏感性分析。结果表明,除非未来储氢技术的效率显着提高,否则该系统将无法在马来西亚实施。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
An Economic Analysis of Small-Scale Standalone Photovoltaic System with Hydrogen Storage System
This paper proposes design steps in obtaining the optimal size of a standalone photovoltaic (PV) system, which is able to meet a predetermined power load requirement. The keys of the system sizing are primarily to satisfy a specific load demand that depends on the power generated from the installed PV system and also to maintain hydrogen storage state of charge. A case study was conducted using Kuala Lumpur's meteorological data and a typical rural area load profile of 2.215 kWh. An economic analysis on the system was performed in order to determine system feasibility. The levelized cost of energy for the proposed system was RM1.98/kWh. However, the results showed that if the same configuration used absorbent glass mat (AGM) battery as the backup power supply, the system cost and levelized cost of energy is lower. Therefore, a sensitivity analysis of the electrolyzer and fuel cell efficiencies towards levelized cost of energy for the proposed system was executed. The result indicates that unless the efficiency of hydrogen storage technologies significantly increases in the future, the system will not be feasible to be implemented in Malaysia.
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