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Estimating sustainable location for harvesting solar power using geographical information systems and remote sensing methods

机译:使用地理信息系统和遥感方法估算用于收获太阳能的可持续地点

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In the last few decades, Renewable energy has received remarkable attention. This is partially because fossil fuels are depleting and the necessity for energy is rising because of the increasing population of the world. Among renewable sources of energy, solar energy is one such type that is becoming increasingly popular because it is inexhaustible, clean, and reliable. Solar radiation is obtained as heat and light that can be converted by solar thermal power generation into valuable thermal energy or electricity generation. With regard to efficiency and financial viability, the availability of trusted data on solar radiation is crucial to forecast the performance of solar power plants at different places in the country. This paper describes a general integrated structure for assessing land suitability for ideal positioning of photovoltaic solar energy panels based on a variety of geographic information system (GIS), remote sensing methods. The Location Viability Assessment, i.e. the areas appropriate for harvesting Solar Energy, is measured based on Global, Diffuse, Direct Solar Radiation Data that estimates the potential of the Solar Power Generation sites. Two interrelated steps were implemented in this study. First, Remote Sensing was used, including LANDSAT 8 satellite data, to extract the study area's land use/land cover map. Second, the Digital Elevation Model (DEM) was used to model the research zone map of aspect angles and slope maps. These results indicate the potential sites for Solar Power Generation.
机译:在过去的几十年中,可再生能源得到了显着的关注。这部分是因为化石燃料耗尽,因为世界人口增加,能源的必要性正在上升。在可再生能源来源中,太阳能是一种这种类型,这是越来越受欢迎的,因为它取之不尽,干净,可靠。作为热量和光的热量和光线可以通过太阳能热发电转换为有价值的热能或发电。考虑到效率和金融生存力,可信赖的太阳辐射数据的可用性至关重要,以预测国内不同地方的太阳能发电厂的性能至关重要。本文介绍了一种用于评估基于各种地理信息系统(GIS),遥感方法的光伏太阳能板理想定位的土地适用性的一般集成结构。位置活力评估,即适用于太阳能的区域是基于全局,漫射,直接的太阳辐射数据来测量,估计太阳能发电位点的潜力。本研究实施了两个相互关联的步骤。首先,使用遥感,包括Landsat 8卫星数据,以提取研究区的土地使用/陆地覆盖地图。其次,数字高度模型(DEM)用于模拟方面角度和斜率图的研究区地图。这些结果表明太阳能发电的潜在地点。

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