Estimation of the Potential Achievable Solar Energy of the Buildings Using Photogrammetric Mesh Models

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ID: 267644
2021
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Abstract
Estimating the potential achievable solar energy in urban buildings is significantly important for the long-term planning and development of environmental protection strategies. Nevertheless, conventional methods based on LiDAR data are often costly and require more than one platform to obtain complete building surface information. The development of oblique photogrammetry technology enables fast and accurate acquiring of the 3D information of the surface. In this paper, we propose an efficient method to estimate the potential achievable solar energy of building surfaces based on photogrammetric mesh models. In this method, we use photogrammetric mesh models as the input data and then propose a hierarchical algorithm for shadow analysis. Combined with the solar radiation model, we then obtain the potential achievable solar energy of the building surface. We further investigate the performance of the proposed method and it is shown that this method outperforms the multi-source LiDAR data.
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zhang2021remoteestimation Use this key to autocite in the manuscript while using SciMatic Manuscript Manager or Thesis Manager
Authors Yunsheng Zhang;Zhisheng Dai;Weixi Wang;Xiaoming Li;Siyang Chen;Li Chen;Zhang, Yunsheng;Dai, Zhisheng;Wang, Weixi;Li, Xiaoming;Chen, Siyang;Chen, Li;
Journal remote sensing
Year 2021
DOI
10.3390/rs13132484
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