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Hybrid Power Generation by Using Solar and Wind Energy: Case Study

机译:利用太阳能和风能的混合发电:案例研究

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Energy is critical to the economic growth and social development of any country. Indigenous energy resources need to be developed to the optimum level to minimize dependence on imported fuels, subject to resolving economic, environmental and social constraints. This led to an increase in research and development as well as investments in the renewable energy industry in search of ways to meet the energy demand and to reduce the dependency on fossil fuels. Wind and solar energy are becoming popular owing to the abundance, availability and ease of harnessing the energy for electrical power generation. This paper focuses on an integrated hybrid renewable energy system consisting of wind and solar energies. Many parts of Libya have the potential for the development of economic power generation, so maps locations were used to identify where both wind and solar potentials are high. The focal point of this paper is to describe and evaluate a wind-solar hybrid power generation system for a selected location. Grid-tied power generation systems make use of solar PV or wind turbines to produce electricity and supply the load by connecting to the grid. In this study, the HOMER (Hybrid Optimization Model for Electric Renewable) computer modeling software was used to model the power system, its physical behavior and its life cycle cost. Computer modeling software was used to model the power system, its physical behavior and its life cycle cost. The hybrid power system was designed for a building at the University of Al-Marj (MARJU). Through the use of simulations, the installation of ten 100-kW wind turbines and 150-KW solar PV was evaluated.
机译:能源对任何国家的经济增长和社会发展都至关重要。在解决经济,环境和社会限制的前提下,需要将土著能源开发到最佳水平,以最大程度地减少对进口燃料的依赖。为了寻求满足能源需求和减少对化石燃料的依赖的方式,这导致了对可再生能源行业的研究与开发以及投资的增加。风能和太阳能由于其丰富,实用和易于利用的能量来发电而变得越来越流行。本文重点研究由风能和太阳能组成的综合混合可再生能源系统。利比亚的许多地区都有发展经济发电的潜力,因此使用地图位置来确定风能和太阳能潜力都很高的地方。本文的重点是描述和评估选定位置的风光互补发电系统。并网发电系统利用太阳能光伏或风力涡轮机发电并通过连接到电网来提供负载。在这项研究中,使用HOMER(电力可再生混合优化模型)计算机建模软件对电力系统,其物理行为及其生命周期成本进行建模。使用计算机建模软件对电源系统,其物理行为及其生命周期成本进行建模。混合动力系统是为Al-Marj大学(MARJU)的建筑物设计的。通过仿真,评估了十台100千瓦风力涡轮机和150千瓦太阳能PV的安装。

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