Shrivastava Amit, Doda Devendra Kumar, Bundele Mahesh
Department of Electrical Engineering, Poornima University, Sitapura, Jaipur, Rajasthan, 302022, India.
Department of Computer Engineering, Poornima College of Engineering, Sitapura, Jaipur, Rajasthan, 302022, India.
Environ Sci Pollut Res Int. 2021 Jan;28(4):3906-3912. doi: 10.1007/s11356-020-10041-6. Epub 2020 Jul 12.
This paper intends to show the aspects of an environment-friendly hybrid energy system (HES) for reducing the electrical power problems in remote areas and providing pollution-free energy. It draws attention towards renewable HES to attain a consistent and independent system. Optimization of the apparatus extent, step-up asset price, and effects on environment is also taken care of. The HES is capable of supply green electricity to population living in remote areas, where supply from grid is a major hurdle. In the proposed HES, the main proportion of power has been generated from the solar panels and wind turbines, while the batteries act as backup power source. The optimization of designed system has been done using the HOMER software. The design and application of the proposed method is a novel solution for the selected location. The results obtained from simulation justify that the proposed HES acts as viable solution for electrification of remote areas which are not connected from the grid.
本文旨在展示一种环境友好型混合能源系统(HES)的各个方面,该系统用于减少偏远地区的电力问题并提供无污染能源。它将注意力引向可再生混合能源系统,以实现一个稳定且独立的系统。同时还考虑了设备规模的优化、升压资产价格以及对环境的影响。该混合能源系统能够为生活在偏远地区的居民提供绿色电力,在这些地区,电网供电是一个主要障碍。在所提出的混合能源系统中,主要电力由太阳能板和风力涡轮机产生,而电池作为备用电源。所设计系统的优化是使用HOMER软件完成的。所提出方法的设计和应用对于所选地点而言是一种新颖的解决方案。模拟得到的结果证明,所提出的混合能源系统是偏远地区(未接入电网)电气化的可行解决方案。