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Utilization of solar energy potential on roofs: building extraction from the LiDAR database in a Hungarian sample area

机译:利用屋顶上的太阳能潜力:从匈牙利样本区的LiDAR数据库中提取建筑物

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According to the Horizon 2020 climate and energy package, legislation has to meet the 20-20-20 target. That means that EU member countries have to reduce the amount of greenhouse gases by 20% to increase the proportion of renewable energy to 20% and to improve the energy efficiency by 20%. Our study is connected to renewable energy issues, the goal was to assess the extent of solar radiation exploitation potential of roofs in a typical Hungarian residential area. Our sample area (~1 km~2) was in Debrecen, the second largest city in Hungary. An aerial Light Detection and Ranging (LiDAR) survey was conducted with the density of 10 points/m~2. We extracted the buildings with the MicroStation TerraScan software and tested the geometry of them. The classification and vectorization of buildings were based on Terrascan semi-automatic algorithms in a Microstation environment. Primarily the roofs were important for us as these surfaces are the possible spaces for thermal and photovoltaic equipment. We determined the slope and aspect for each roof element and summarized the whole possible surface using the detected roof parts. Our research shows that the LiDAR-based survey of roof-exploitation for solar energy can be a good solution in a residential area, but we have to take into account some circumstances, e.g. the corrupted roof-geometries or numerous misinterpreted street furniture.
机译:根据《地平线2020年气候和能源计划》,立法必须达到20-20-20的目标。这意味着欧盟成员国必须将温室气体排放量减少20%,才能将可再生能源的比例提高到20%,并将能源效率提高20%。我们的研究与可再生能源问题有关,目标是评估典型匈牙利居民区屋顶的太阳辐射利用潜力。我们的样本区域(约1 km〜2)位于匈牙利第二大城市德布勒森。进行了密度为10点/ m〜2的航空光探测与测距(LiDAR)测量。我们使用MicroStation TerraScan软件提取了建筑物,并测试了它们的几何形状。建筑物的分类和矢量化基于Microstation环境中的Terrascan半自动算法。首先,屋顶对我们很重要,因为这些表面是热力和光伏设备的可能空间。我们确定了每个屋顶元素的坡度和坡度,并使用检测到的屋顶部分总结了整个可能的表面。我们的研究表明,基于LiDAR的屋顶太阳能开发调查在住宅区可能是一个很好的解决方案,但我们必须考虑某些情况,例如损坏的屋顶几何形状或大量曲解的街道家具。

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