光伏能源渗透率对光伏-风能混合可再生能源系统的影响

IF 0.3 Q4 MATERIALS SCIENCE, MULTIDISCIPLINARY Nanomaterials and Energy Pub Date : 2023-07-01 DOI:10.1680/jnaen.23.00052
Madhumita Das, R. Mandal
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引用次数: 1

摘要

印度是一个热带国家,有大量的太阳辐射,适合光伏(PV)应用。该国在其广大的沿海地区也拥有风能。印度是一个农业经济国家,对灌溉的需求日益增长。利用混合可再生能源满足该国的农业需求将是迈向可持续未来的一步。针对Haldia的环境条件,开发了独立的光伏-风-铅酸电池混合可再生能源系统(HRES),以满足农业活动的需要。研究光伏发电对系统风能容量、电池容量、容量短缺、净现值成本(NPC)、能源成本(COE)、光伏和风能百分比以及剩余能源产生的影响。优化是基于假设HRES没有未满足的负载和最低的COE。该研究为该地区提供了一系列无未满足负荷的风能容量。研究发现,该站点的理想HRES的COE为每千瓦时0.312美元。这项研究可以帮助农民提高他们对可再生能源的依赖,减少他们在农业活动中对电网的依赖。
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Effect of photovoltaic energy penetration on photovoltaic-wind hybrid renewable energy system
India is a tropical country that gets a significant amount of solar irradiation that is suitable for photovoltaic (PV) applications. The country is also endowed with wind energy in its large coastal areas. India is an agro-economic country that has a growing need for irrigation. Utilization of hybrid renewable energy for the agricultural needs of the country would be a step towards a sustainable future. For the environmental conditions of Haldia, a standalone Photovoltaic-Wind-Lead Acid Battery hybrid renewable energy system (HRES) was developed to cater to the need of agricultural activities. The investigation is conducted for the impact of PV penetration on the system’s wind energy capacity, battery capacity, capacity shortage, net present cost (NPC), cost of energy (COE), PV and wind energy percentage, and surplus energy produced. The optimization is based on the assumption that the HRES has no unmet load and the lowest COE. The research provides a range of Wind energy capacity for the location with no unmet loads. The research discovers the site’s ideal HRES with a COE of 0.312 $ per kWh. This study may help farmers by boosting their reliance on power from renewable energy sources and decreasing their dependency on grid power for agricultural activities.
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来源期刊
Nanomaterials and Energy
Nanomaterials and Energy MATERIALS SCIENCE, MULTIDISCIPLINARY-
CiteScore
2.10
自引率
0.00%
发文量
2
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