[1] GROGER G, PLUMER L. CityGML-interoperable semantic 3D city models[J].ISPRS Journal of Photogrammetry and Remote Sensing, 2012, 71:12-33. [2] WANG Q, KIM M K.Applications of 3D point cloud data in the construction industry:a fifteen-year review from 2004 to 2018[J]. Advanced Engineering Informatics, 2019, 39:306-319. [3] 王令文.结合点云数据与BIM技术的古建筑三维重建与信息化管理[J]. 测绘通报, 2018(6):114-117. [4] HENN A, GROGER G, STROH V, et al.Model driven reconstruction of roofs from sparse LiDAR point clouds[J]. ISPRS Journal of Photogrammetry and Remote Sensing, 2013, 76:17-29. [5] AWRANGJEB M, ZHANG C S, FRASER C S. Automatic extraction of building roofs using LiDAR data and multispectral imagery[J]. ISPRS Journal of Photogram-metry and Remote Sensing, 2013, 83:1-18. [6] SUMER E, TURKER M. Automated extraction of photorea-listic facade textures from single ground-level building images[J].International Journal of Pattern Recognition and Artificial Intelligence, 2014, 28(4):1455007. [7] XIA S B, WANG R S.Extraction of residential building instances in suburban areas from mobile LiDAR data[J]. ISPRS Journal of Photogrammetry and Remote Sensing, 2018, 144:453-468. [8] LI M L, ROTTENSTEINER F, HEIPKE C.Modelling of buildings from aerial LiDAR point clouds using TINs and label maps[J]. ISPRS Journal of Photogrammetry and Remote Sensing, 2019, 154:127-138. [9] 曾齐红, 毛建华,李先华, 等. 机载LiDAR点云数据的建筑物重建研究[J]. 武汉大学学报(信息科学版), 2011, 36(3):321-324,328. [10] SUSAKI J.Knowledge-based modeling of buildings in dense urban areas by combining airborne LiDAR data and aerial images[J]. Remote Sensing, 2013, 5(11):5944-5968. [11] 王春林,孙金彦,周绍光,等. 影像辅助下LiDAR数据建筑物轮廓信息提取[J]. 国土资源遥感, 2017,29(1):78-85. [12] 詹总谦,李一挥,桂鑫源.倾斜摄影测量与SketchUp二次开发技术相结合的建筑三维重建[J].测绘通报,2017(5):71-74. [13] 朱剑伟.一种基于无人机影像的建筑物三维模型重建方法[J].测绘通报, 2018(S1):124-128. [14] CHENG L, ZHAO W, HAN P, et al. Building region derivation from LiDAR data using a reversed iterative mathematic morphological algorithm[J]. Optics Communications, 2013, 286:244-250. [15] AWRANGJEB M, LU G, FRASER C. Automatic building extraction from LiDAR data covering complex urban scenes[J]. ISPRS International Archives of the Photogrammetry, Remote Sensing and Spatial Information Sciences, 2014, XL-3:25-32. [16] SAMPATH A, SHAN J. Segmentation and reconstruction of polyhedral building roofs from aerial LiDAR point clouds[J]. IEEE Transactions on Geoscience and Remote Sensing, 2010, 48(3):1554-1567. [17] 官云兰, 程效军, 施贵刚.一种稳健的点云数据平面拟合方法[J]. 同济大学学报(自然科学版), 2008, 36(7):981-984. [18] 丁世飞, 齐丙娟, 谭红艳. 支持向量机理论与算法研究综述[J]. 电子科技大学学报, 2011, 40(1):1-10. [19] ZHOU Q Y,NEUMANN U. Fast and extensible building modeling from airborne LiDAR data[C]//Proceedings of the 16th ACM SIGSPATIAL International Conference on Advances in Geographic Information Systems. Irvine:ACM, 2008:1-8. [20] BESL P J,MCKAY N D. A method for registration of 3D shapes[J]. IEEE Transactions on Pattern Analysis and Machine Intelligence, 1992, 14(2):239-256. [21] ROTTENSTEINER F, SOHN G, GERKE M, et al. Results of the ISPRS benchmark on urban object detection and 3D building reconstruction[J]. ISPRS Journal of Photogrammetry and Remote Sensing, 2014, 93:256-271. [22] OUDE ELBERINK S, VOSSELMAN G. Building reconstruc-tion by target based graph matching on incomplete laser data:analysis and limitations[J]. Sensors, 2009, 9(8):6101-6118. [23] RAU J Y,LIN B C. Automatic roof model reconstruction from ALS data and 2D ground planes based on side projection and the TMR algorithm[J]. ISPRS Journal of Photogrammetry and Remote Sensing, 2011, 66(6):S13-S27. [24] XIONG B, OUDE ELBERINK S,VOSSELMAN G. A graph edit dictionary for correcting errors in roof topology graphs reconstructed from point clouds[J]. ISPRS Journal of Photogrammetry and Remote Sensing, 2014, 93:227-242. [25] GILANI A N, AWRANGJEB M, LU G. Robust building roof segmentation using airborne point cloud data[C]//IEEE International Conference on Image Processing (ICIP). AZ:IEEE, 2016. [26] JARZABEK-RYCHARD M, BORKOWSKI A. 3D building reconstruction from ALS data using unambiguous decomposition into elementary structures[J]. ISPRS Journal of Photogrammetry and Remote Sensing, 2016, 118:1-12. |