Ayua Tyoyima John, Emetere Moses Eterigho
Department of Physical and Natural Sciences, University of the Gambia, Faraba Banta Campus, Serekunda, The Gambia.
Department of Physics, Bowen University, Iwo, Nigeria.
Sci Rep. 2024 Nov 20;14(1):28739. doi: 10.1038/s41598-024-77946-x.
Countries in Africa rank the highest in low energy accessibility and air pollution globally. Presenting the urgent need to explore renewable energy sources to tackle the power challenge and reduce the carbon footprint for a greener atmosphere. A novel hybrid wind and solar renewable energy power system (HREPS) coupled to a battery that is capable of powering industrial appliances in the Basse district of The Gambia has been proposed. The HREPS size was estimated automatically with the PVsyst software taking into account the PV power and battery capacity based on the load profile and loss of load probability, with all the necessary meteorological, technical, and economic factors. The optimal size was possible with 20 photovoltaic modules (250 W) and 1 Wind generator (1 KW) compatible with the annual load requirement of about 2555 MWh. These results suggested that the HREPS is reliable for the user's load demand in all the tested meteorological conditions of the study area. When the HREPS is linked to any other renewable source, it shows the potential of gaining about 8395 kWh annually in the battery. The continuous operation of the hybrid system for 21 years presents a net gain of > 400% for the standalone systems with a projected gain of > 600% when linked to a small smart grid system. Since high taxes may scuttle these gains, it is recommended that the Government encourage investment in renewable energy power systems by subsidizing the taxes on the purchase of items to make them more affordable.
非洲国家在全球能源可及性低和空气污染方面排名最高。这凸显了迫切需要探索可再生能源来应对电力挑战并减少碳足迹,以营造更绿色的环境。有人提出了一种新型的风能和太阳能混合可再生能源电力系统(HREPS),该系统与一个电池相连,能够为冈比亚巴塞地区的工业电器供电。利用PVsyst软件,根据负荷曲线和负荷损失概率,并考虑到光伏电力和电池容量,以及所有必要的气象、技术和经济因素,自动估算了HREPS的规模。对于大约2555兆瓦时的年负荷需求,使用20个光伏模块(250瓦)和1台风力发电机(1千瓦)可以实现最优规模。这些结果表明,在研究区域所有测试的气象条件下,HREPS对于用户的负荷需求是可靠的。当HREPS与任何其他可再生能源连接时,电池每年有望获得约8395千瓦时的电量。混合系统连续运行21年,独立系统的净收益超过400%,与小型智能电网系统连接时预计收益超过600%。由于高额税收可能会破坏这些收益,建议政府通过补贴购买物品的税收来鼓励对可再生能源电力系统的投资,使其更具可承受性。