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Techno-Economo-Environmental Viability Assessment of Grid-Connected Photovoltaic System- A Case for Different Cities of Pakistan

机译:并网光伏发电系统的技术经济环境可行性评估-以巴基斯坦不同城市为例

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It is established fact that with the increased demand of electricity and depletion of conventional energy sources reserves, lately researchers are recommending the use of standalone and grid connected photovoltaic (PV) systems. Pakistan has ~2.324 million MW capacity of electricity generation through solar PV applications which is hardly exploited. This work is focused on analyzing the technical, economic, and environmental aspects of a standalone photovoltaic system installed in five different cities of Pakistan (Faisalabad, Sakkar, Bhakkar, Gawadar and Abbotabad). Simulations are carried out on "RETScreen" for 1 kW system capacity. The weather data used in simulation is reported by the National Aeronautics and Space Administration (NASA). Technical analysis is performed in terms of capacity factor and electricity delivered to load. The economics of the designed system is investigated considering different economic paradigms including its whole-sum present value, rate of return, payback time, benefit-cost ratio and annual life cycle savings. Outcomes elaborate that Abbottabad is the most feasible location among selected locations with 4.1 years payback period, while Bhakkar and Gwadar are the least feasible with 4.6 years payback period.
机译:已经确定的事实是,随着电力需求的增加和常规能源储备的枯竭,最近的研究人员建议使用独立的和并网的光伏(PV)系统。巴基斯坦通过太阳能光伏应用发电的能力约为232.4百万兆瓦,这几乎没有得到利用。这项工作的重点是分析安装在巴基斯坦五个不同城市(费萨拉巴德,萨克卡尔,巴克卡尔,加瓦达尔和阿伯塔巴德)的独立光伏系统的技术,经济和环境方面。在“ RETScreen”上对1 kW系统容量进行了仿真。模拟中使用的气象数据是由美国国家航空航天局(NASA)报告的。技术分析是根据容量系数和输送给负载的电量进行的。对设计系统的经济学进行了研究,考虑了不同的经济范式,包括其总和的现值,回报率,投资回收期,效益成本比和年度生命周期节省。结果表明,在选定地点中,阿伯塔巴德(Abbottabad)是最可行的地点,投资回收期为4.1年,而巴克卡尔(Bhakkar)和瓜达尔(Gwadar)是最不可行的地点,回收期为4.6年。

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