Effects of wind speed and temperature on economics and environmental impact assessment of different solar PV systems in Malaysia

Tijani Alhassan Salami, Ariffin Salbiah
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Abstract

This study aims to analyse the effect of temperature and wind speed on the performance of different types of photovoltaic (PV) systems at a different state in Malaysia and how it affects the economics and environmental impact assessment in the present year of 2018 as well as future years in 2030 and 2040. Three types of grid-connected solar PV modules namely Mono-Crystalline, Poly-crystalline, and Thin Film were selected to be implemented in different cities of Shah Alam, Chuping, Alor Setar, Ipoh and Kota Kinabalu. A mathematical model was adopted to estimate the performance characteristics of the solar PV modules. Based on the data in the present year, the highest power output produced by the Mc-Si module for Alor Setar city is given by 33.40 MWh/year while the lowest amount of power output provided by this PV panel is about 28.18 MWh/year in Shah Alam. Furthermore, an area of 144 m2 for the Mono-Crystalline PV module can satisfy the total energy requirement by the resident as it was the most profitable to be implemented compared to Poly-crystalline and Thin Film. The findings of this study can serve as important information on the economic viability of installing PV systems in the selected cities in Malaysia.
风速和温度对马来西亚不同太阳能光伏系统经济性和环境影响评价的影响
本研究旨在分析马来西亚不同州的温度和风速对不同类型光伏(PV)系统性能的影响,以及它如何影响2018年以及2030年和2040年未来几年的经济和环境影响评估。三种类型的并网太阳能光伏组件,即单晶,多晶和薄膜,被选中在沙阿南,楚平,亚罗西达,怡保和哥打京那巴鲁的不同城市实施。采用数学模型对太阳能光伏组件的性能特性进行了估计。根据今年的数据,Mc-Si模块为Alor Setar市提供的最高发电量为33.40兆瓦时/年,而该光伏电池板在Shah Alam提供的最低发电量约为28.18兆瓦时/年。此外,144平方米的单晶光伏组件可以满足居民的总能源需求,因为与多晶和薄膜相比,单晶光伏组件是最有利可图的。本研究的结果可以作为在马来西亚选定城市安装光伏系统的经济可行性的重要信息。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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