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首页> 外文期刊>Journal of Cleaner Production >Automated registration of potential locations for solar energy production with Light Detection And Ranging (LiDAR) and small format photogrammetry
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Automated registration of potential locations for solar energy production with Light Detection And Ranging (LiDAR) and small format photogrammetry

机译:利用光检测和测距(LiDAR)和小型摄影测量法自动注册潜在的太阳能生产位置

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摘要

Energy production and consumption is a key element in future development which is influenced both by the technical possibilities available and by decision makers. Sustainability issues are closely linked in with energy policy, given the desire to increase the proportion of renewable energy. According to the Horizon 2020 climate and energy package, European Union (EU) member countries have to reduce the amount of greenhouse gases they emit by 20%, to increase the proportion of renewable energy to 20% and to improve energy efficiency by 20% by 2020. In this study we aim to assess the opportunities available to exploit solar radiation on roofs with Light Detection And Ranging (LiDAR) and photogrammetry techniques. The surveyed area was in Debrecen, the second largest city in Hungary. An aerial LiDAR survey was conducted with a density of 12 points/m(2), over a 7 x 1.8 km wide band. We extracted the building and roof models of the buildings from the point cloud. Furthermore, we applied a low-cost drone (DJI Phantom with a GoPro camera) in a smaller area of the LiDAR survey and also created a 3D model: buildings and roof planes were identified with multiresolution segmentation of the digital surface models (DSM) and orthophoto coverages. Building heights and building geometry were also extracted and validated in field surveys. 50 buildings were chosen for the geodetic survey and the results of the accuracy assessment were extrapolated to other buildings; in addition to this, 100 building heights were measured. We focused primarily on the roofs, as these surfaces offer possible locations for thermal and photovoltaic equipment. We determined the slope and aspect of roof planes and calculated the incoming solar energy according to roof planes before comparing the results of the point cloud processing of LiDAR data and the segmentation of DSMs. Extracted roof geometries showed varying degrees of accuracy: the research proved that LiDAR-based roof-modelling is the best choice in residential areas, but the results of the drone survey did not differ significantly. Generally, both approaches can be applied, because the solar radiation values calculated were similar. The aerial techniques combined with the multiresolution processing demonstrated can provide a valuable tool to estimate potential solar energy. (C) 2015 Elsevier Ltd. All rights reserved.
机译:能源生产和消耗是未来发展的关键因素,既受到现有技术可能性的影响,也受到决策者的影响。考虑到希望增加可再生能源比例的问题,可持续性问题与能源政策密切相关。根据“地平线2020年气候和能源计划”,欧盟(EU)成员国必须将其排放的温室气体减少20%,将可再生能源的比例提高到20%,并将能源效率提高20%。 2020年。在这项研究中,我们旨在评估利用光探测与测距(LiDAR)和摄影测量技术开发屋顶上的太阳辐射的机会。被调查区域位于匈牙利第二大城市德布勒森。在7 x 1.8 km的宽带上以12点/ m(2)的密度进行了一次LiDAR空中调查。我们从点云中提取了建筑物的建筑物和屋顶模型。此外,我们在LiDAR调查的较小区域中使用了低成本无人机(带有GoPro相机的DJI Phantom),还创建了3D模型:通过对数字表面模型(DSM)和数字表面模型进行多分辨率分割来识别建筑物和屋顶平面正射影像覆盖率。还提取了建筑物的高度和建筑物的几何形状,并在现场调查中进行了验证。选择了50座建筑物进行大地测量,并将准确性评估的结果外推到其他建筑物;除此之外,还测量了100个建筑物的高度。我们主要关注屋顶,因为这些表面为热能和光伏设备提供了可能的位置。在比较LiDAR数据的点云处理结果和DSM分割结果之前,我们确定了屋顶平面的坡度和纵横比,并根据屋顶平面计算了传入的太阳能。提取的屋顶几何形状显示出不同程度的准确性:研究证明,基于LiDAR的屋顶建模是居民区的最佳选择,但无人机调查的结果并没有显着差异。通常,两种方法都可以应用,因为计算的太阳辐射值相似。空中技术与演示的多分辨率处理相结合可以提供有价值的工具来估算潜在的太阳能。 (C)2015 Elsevier Ltd.保留所有权利。

著录项

  • 来源
    《Journal of Cleaner Production》 |2016年第5期|3820-3829|共10页
  • 作者单位

    Univ Debrecen, Dept Phys Geog & Geoinformat, H-4032 Debrecen, Hungary;

    Univ Debrecen, Dept Phys Geog & Geoinformat, H-4032 Debrecen, Hungary|Karoly Robert Coll, Res Inst Remote Sensing & Rural Dev, H-3200 Gyongyos, Hungary;

    Budapest Univ Technol & Econ, Dept Bldg Serv & Proc Engn, Budapest, Hungary;

    Univ Debrecen, Dept Phys Geog & Geoinformat, H-4032 Debrecen, Hungary;

    Karoly Robert Coll, Res Inst Remote Sensing & Rural Dev, H-3200 Gyongyos, Hungary;

    Budapest Univ Technol & Econ, Dept Bldg Serv & Proc Engn, Budapest, Hungary;

    Univ Debrecen, Dept Phys Geog & Geoinformat, H-4032 Debrecen, Hungary;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Roof plane; Solar irradiation; Point cloud; Multiresolution segmentation; Drone;

    机译:屋顶平面;太阳辐射;点云;多分辨率分割;无人机;

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