Techno-economic-environmental optimization of on-grid hybrid renewable energy-electric vehicle charging stations in BTS infrastructure

IF 7.1 Q1 ENERGY & FUELS Energy Conversion and Management-X Pub Date : 2024-07-01 DOI:10.1016/j.ecmx.2024.100644
Muhammad Bilal Ali , Abdullah Altamimi , Syed Ali Abbas Kazmi , Zafar A. Khan , Saeed Alyami
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Abstract

Hybrid renewable energy systems with electric vehicle charging stations can provide reliable and environmentally friendly power output for telecom Base Transceiver Stations (BTS). This paper provides an optimized BTS telecom deployment method. The proposed framework uses actual load profiles to conduct a techno-economic assessment of 26 independent sites in North, South, and Central regions to reduce NPC, operational costs, LCOE, and diesel generator running hours. To complete this study’s financial model, these 26 BTS sites are connected to the grid for net metering and environmentally friendly electric vehicle (EV) charging stations, and incentives (bonus depreciation and investment tax credit) are added. Finally, numerous uncertain elements are sensitively analyzed, and a carbon emission reduction environmental evaluation is done. When connected to a grid for net metering, freestanding hybrid systems (diesel generator-photovoltaic-wind-battery) have a significantly lower LCOE. Standalone hybrid systems have LCOEs between 0.1096 and 0.2325 $/kWh. On-grid hybrid systems have an average LCOE of 0.004065 to 0.03559 $/kWh. After adding electric vehicle charging stations and incentives, the average LCOE drops further. Optimization and comparative studies reveal that the best grid expansion hybrid charging station is cheaper, greener, and more sustainable than the stand-alone hybrid system. The Sustainable Development Goals (SDGs) and governments and corporate investors can utilize the suggested studies to make decisions and optimize policies.

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基站基础设施中的并网可再生能源-电动汽车混合充电站的技术-经济-环境优化
带有电动汽车充电站的混合可再生能源系统可为电信基站(BTS)提供可靠、环保的电力输出。本文提供了一种优化的电信基站部署方法。所提出的框架利用实际负荷曲线,对北部、南部和中部地区的 26 个独立站点进行了技术经济评估,以降低 NPC、运营成本、LCOE 和柴油发电机运行时间。为了完成本研究的财务模型,这 26 个 BTS 站点被连接到电网,以实现净计量和环保型电动汽车 (EV) 充电站,并增加了激励措施(奖励折旧和投资税收抵免)。最后,对许多不确定因素进行了敏感分析,并进行了碳减排环境评估。当连接到电网进行净计量时,独立式混合系统(柴油发电机-光伏-风能-电池)的 LCOE 明显较低。独立式混合系统的 LCOE 介于 0.1096 至 0.2325 美元/千瓦时之间。并网混合动力系统的平均 LCOE 为 0.004065 到 0.03559 美元/千瓦时。在增加电动汽车充电站和激励措施后,平均 LCOE 进一步下降。优化和比较研究表明,最佳的电网扩展混合动力充电站比独立的混合动力系统更便宜、更环保、更可持续。可持续发展目标(SDGs)、政府和企业投资者可以利用建议的研究来制定决策和优化政策。
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来源期刊
CiteScore
8.80
自引率
3.20%
发文量
180
审稿时长
58 days
期刊介绍: Energy Conversion and Management: X is the open access extension of the reputable journal Energy Conversion and Management, serving as a platform for interdisciplinary research on a wide array of critical energy subjects. The journal is dedicated to publishing original contributions and in-depth technical review articles that present groundbreaking research on topics spanning energy generation, utilization, conversion, storage, transmission, conservation, management, and sustainability. The scope of Energy Conversion and Management: X encompasses various forms of energy, including mechanical, thermal, nuclear, chemical, electromagnetic, magnetic, and electric energy. It addresses all known energy resources, highlighting both conventional sources like fossil fuels and nuclear power, as well as renewable resources such as solar, biomass, hydro, wind, geothermal, and ocean energy.
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