Solar Powered Electric Vehicle Charging Station With Integrated Battery Storage System

Energy Storage Pub Date : 2024-11-04 DOI:10.1002/est2.70077
Aradhana Shukla, Harisharanam Shukla, Satish Kumar Yadav, Jyotsna Singh, Rajendra Bahadur Singh
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Abstract

The shift towards electrical vehicles (EVs) can be an important alternative to internal combustion engines for sustainable energy solutions. However, increased EV adoption will increase the charging demand, and there will be a load on the grid electricity. Integrating solar photovoltaic systems with EV charging infrastructure will not only support environmental goals, but also ensure a more resilient and self-sufficient energy system. A standalone PV system is a good option to reduce the stress on the grid for charging EVs. This present work pivots on the design and performance assessment of a solar photovoltaic system customized for an electric vehicle charging station in Bangalore, India. For this purpose, we have used the PVsyst software to design and optimize a standalone PV system with battery energy storage for EV charging stations. The result shows that 51.1 kWp PV system will be sufficient to meet the energy demand of the charging station by producing 98 313 kWh array energy. The proposed system showed a good average performance ratio of 68.90%. This study shows that the integration of standalone solar photovoltaic systems with EV charging stations is crucial in India and other countries to alleviate grid stress and promote sustainable energy use. This approach not only supports the transition to cleaner transportation but also enhances energy security and reduces dependency on fossil fuels.

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集成电池存储系统的太阳能电动汽车充电站
在可持续能源解决方案中,向电动汽车(EV)的转变可以成为内燃机的重要替代品。然而,电动汽车采用率的提高将增加充电需求,对电网电力造成负荷。将太阳能光伏系统与电动汽车充电基础设施相结合,不仅能支持环保目标,还能确保能源系统更具弹性和自给自足。独立光伏系统是减轻电网对电动汽车充电压力的一个不错选择。本研究的重点是为印度班加罗尔的电动汽车充电站定制太阳能光伏系统的设计和性能评估。为此,我们使用 PVsyst 软件为电动汽车充电站设计并优化了带蓄电池储能的独立光伏系统。结果表明,51.1 kWp 光伏系统可产生 98 313 kWh 阵列能量,足以满足充电站的能源需求。拟议系统的平均性能比为 68.90%,表现良好。这项研究表明,在印度和其他国家,独立太阳能光伏系统与电动汽车充电站的整合对于缓解电网压力和促进能源的可持续利用至关重要。这种方法不仅有助于向清洁交通过渡,还能增强能源安全,减少对化石燃料的依赖。
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