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Application of Airborne LiDAR Data and Geographic Information Systems (GIS) to Develop a Distributed Generation System for the Town of Normal, IL

机译:机载LiDAR数据和地理信息系统(GIS)在为伊利诺伊州Normal镇开发分布式发电系统中的应用

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Distributed generation allows a variety of small, modular power-generating technologies to be combined with load management and energy storage systems to improve the quality and reliability of our electricity supply. As part of the US Environmental Protection Agency's effort to reduce CO2 emissions from existing power plants by 30% by 2030, distributed generation through solar photovoltaic systems provides a viable option for mitigating the negative impacts of centralized fossil fuel plants. This study conducted a detailed analysis to identify the rooftops in a town in Central Illinois that are suitable for distributed generation solar photovoltaic systems with airborn LiDAR data and to quantify their energy generation potential with an energy performance model. By utilizing the available roof space of the 9,718 buildings in the case study area, a total of 39.27 MW solar photovoltaic systems can provide electrical generation of 53,061 MWh annually. The unique methodology utilized for this assessment of a town's solar potential provides an effective way to invest in a more sustainable energy future and ensure economic stability.
机译:分布式发电可将各种小型模块化发电技术与负载管理和能量存储系统结合使用,以提高我们电力供应的质量和可靠性。作为美国环境保护署努力到2030年将现有发电厂的CO 2 排放量减少30%的一部分,通过太阳能光伏系统的分布式发电为减轻集中化石燃料的负面影响提供了一个可行的选择。植物。这项研究进行了详细的分析,以找出伊利诺伊州中部一个城镇的屋顶,该屋顶适用于具有机载LiDAR数据的分布式发电太阳能光伏系统,并通过能源绩效模型量化其发电潜力。通过利用案例研究区域中9,718座建筑物的可用屋顶空间,每年总共39.27 MW太阳能光伏系统可提供53,061 MWh的发电量。用于评估城镇太阳能潜力的独特方法论为投资于更可持续的能源未来并确保经济稳定提供了有效途径。

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