[1] |
LU Chunfang, CAI Chaoxun. Challenges and countermeasures for construction safety during the Sichuan-Tibet railway project[J]. Engineering, 2019, 5(5): 833-838.
|
[2] |
WANG Qi, QIN Qian, JIANG Bei, et al. Mechanized construction of fabricated arches for large-diameter tunnels[J]. Automation in Construction, 2021, 124: 103583.
|
[3] |
吴波, 朱林萍, 李扬波, 等. 基于K-means聚类模型的隧道施工安全风险评价方法及应用研究[J]. 重庆交通大学学报(自然科学版), 2023, 42(11): 80-87.
|
|
WU Bo, ZHU Linping, LI Yangbo, et al. Evaluation method and application of tunnel construction safety risk based on K-means clustering model[J]. Journal of Chongqing Jiaotong University (Natural Science), 2023, 42(11): 80-87.
|
[4] |
SOUSA R L, EINSTEIN H H. Lessons from accidents during tunnel construction[J]. Tunnelling and Underground Space Technology, 2021, 113: 103916.
|
[5] |
YE Zijian, YE Ying, ZHANG Chenping, et al. A digital twin approach for tunnel construction safety early warning and management[J]. Computers in Industry, 2023, 144: 103783.
|
[6] |
INSA-IGLESIAS M, JENKINS M D, MORISON G. 3D visual inspection system framework for structural condition monitoring and analysis[J]. Automation in Construction, 2021, 128: 103755.
|
[7] |
LIU Wenli, WU Xianguo, ZHANG Limao, et al. Sensitivity analysis of structural health risk in operational tunnels[J]. Automation in Construction, 2018, 94: 135-153.
|
[8] |
李珵, 卢小平, 朱宁宁, 等. 基于激光点云的隧道断面连续提取与形变分析方法[J]. 测绘学报, 2015, 44(9): 1056-1062. DOI:.
doi: 10.11947/j.AGCS.2015.20140632
|
|
LI Cheng, LU Xiaoping, ZHU Ningning, et al. Continuously extracting section and deformation analysis for subway tunnel based on LiDAR points[J]. Acta Geodaetica et Cartographica Sinica, 2015, 44(9): 1056-1062. DOI:.
doi: 10.11947/j.AGCS.2015.20140632
|
[9] |
SHEN Yueqian, WANG Jinguo, WANG Jinhu, et al. Methodology for extraction of tunnel cross-sections using dense point cloud data[J]. Journal of Geodesy and Geoinformation Science, 2021, 4(2): 56-71.
|
[10] |
李帅鑫, 李九人, 田滨, 等. 面向点云退化的隧道环境的无人车激光SLAM方法[J]. 测绘学报, 2021, 50(11): 1487-1499. DOI:.
doi: 10.11947/j.AGCS.2021.20210248
|
|
LI Shuaixin, LI Jiuren, TIAN Bin, et al. A laser SLAM method for unmanned vehicles in point cloud degenerated tunnel environments[J]. Acta Geodaetica et Cartographica Sinica, 2021, 50(11): 1487-1499. DOI:.
doi: 10.11947/j.AGCS.2021.20210248
|
[11] |
GONG Z, LI J, LUO Z P, et al. Mapping and semantic modeling of underground parking lots using a backpack LiDAR system[J]. IEEE Transactions on Intelligent Transportation Systems, 2021, 22(2): 734-746.
|
[12] |
JIAO Jianhao, YE Haoyang, ZHU Yilong, et al. Robust odometry and mapping for multi-LiDAR systems with online extrinsic calibration[J]. IEEE Transactions on Robotics, 2023, 38(1): 351-371.
|
[13] |
闫利, 戴集成, 谭骏祥, 等. SLAM激光点云整体精配准位姿图技术[J]. 测绘学报, 2019, 48(3): 313-321. DOI:.
doi: 10.11947/j.AGCS.2019.20170716
|
|
YAN Li, DAI Jicheng, TAN Junxiang, et al. Global fine registration of point cloud in LiDAR SLAM based on pose graph[J]. Acta Geodaetica et Cartographica Sinica, 2019, 48(3): 313-321. DOI:.
doi: 10.11947/j.AGCS.2019.20170716
|
[14] |
KOCER B B, TJAHJOWIDODO T, PRATAMA M, et al. Inspection-while-flying: an autonomous contact-based nondestructive test using UAV-tools[J]. Automation in Construction, 2019, 106: 102895.
|
[15] |
王晨捷, 罗斌, 李成源, 等. 无人机视觉SLAM协同建图与导航[J]. 测绘学报, 2020, 49(6): 767-776. DOI:.
doi: 10.11947/j.AGCS.2020.20190145
|
|
WANG Chenjie, LUO Bin, LI Chengyuan, et al. The collaborative mapping and navigation based on visual SLAM in UAV platform[J]. Acta Geodaetica et Cartographica Sinica, 2020, 49(6): 767-776. DOI:.
doi: 10.11947/j.AGCS.2020.20190145
|
[16] |
ASADI K, SURESH A K, ENDER A, et al. An integrated UGV-UAV system for construction site data collection[J]. Automation in Construction, 2020, 112: 103068.
|
[17] |
周哲, 胡钊政, 李娜, 等. 面向智能车的地下停车场环视特征地图构建与定位[J]. 测绘学报, 2021, 50(11): 1574-1584. DOI:.
doi: 10.11947/j.AGCS.2021.20210205
|
|
ZHOU Zhe, HU Zhaozheng, LI Na, et al. Visual map from around view system for intelligent vehicle localization in underground parking lots[J]. Acta Geodaetica et Cartographica Sinica, 2021, 50(11): 1574-1584. DOI:.
doi: 10.11947/j.AGCS.2021.20210205
|
[18] |
ZHOU Baoding, MO Haoquan, TANG Shengjun, et al. Backpack LiDAR-based SLAM with multiple ground constraints for multistory indoor mapping[J]. IEEE Transactions on Geoscience and Remote Sensing, 2023, 61: 1-16.
|
[19] |
VATANDAŞLAR C, ZEYBEK M. Extraction of forest inventory parameters using handheld mobile laser scanning: a case study from Trabzon, Turkey[J]. Measurement, 2021, 177: 109328.
|
[20] |
GONÇALVES J A, HENRIQUES R. UAV photogrammetry for topographic monitoring of coastal areas[J]. ISPRS Journal of Photogrammetry and Remote Sensing, 2015, 104: 101-111.
|
[21] |
孟德将, 田滨, 蔡峰, 等. 面向无人驾驶矿车的露天矿山道路坡度实时检测方法[J]. 测绘学报, 2021, 50(11): 1628-1638. DOI:.
doi: 10.11947/j.AGCS.2021.2021024
|
|
MENG Dejiang, TIAN Bin, CAI Feng, et al. Road slope real-time detection for unmanned truck in surface mine[J]. Acta Geodaetica et Cartographica Sinica, 2021, 50(11): 1628-1638. DOI:.
doi: 10.11947/j.AGCS.2021.2021024
|
[22] |
YU Fangwen, WU Yujie, MA Songchen, et al. Brain-inspired multimodal hybrid neural network for robot place recognition[J]. Science Robotics, 2023, 8(78): abm6996.
|
[23] |
HU D F, GAN V J L, YIN C. Robot-assisted mobile scanning for automated 3D reconstruction and point cloud semantic segmentation of building interiors[J]. Automation in construction, 2023, 152: 104949.
|
[24] |
PARK J, CHO Y, SHIN Y S. Nonparametric background model-based LiDAR SLAM in highly dynamic urban environments[J]. IEEE Transactions on Intelligent Transportation Systems, 2022, 23(12): 24190-24205.
|
[25] |
KIM G, KIM A. Remove, then revert: static point cloud map construction using multiresolution range images[C]//Proceedings of 2020 IEEE/RSJ International Conference on Intelligent Robots and Systems. Las Vegas: IEEE, 2020: 10758-10765.
|
[26] |
LIM H, HWANG S, MYUNG H. ERASOR: egocentric ratio of pseudo occupancy-based dynamic object removal for static 3D point cloud map building[J]. IEEE Robotics and Automation Letters, 2021, 6(2): 2272-2279..
|
[27] |
YOON D, TANG T, BARFOOT T. Mapless online detection of dynamic objects in 3D LiDAR[C]//Proceedings of 2019 Conference on Computer and Robot Vision. Kingston: IEEE, 2019: 29-31.
|
[28] |
CHEN X Y L, LI S J, MERSCH B, et al. Moving object segmentation in 3D LiDAR data: a learning-based approach exploiting sequential data[J]. IEEE Robotics and Automation Letters, 2021, 6(4): 6529-6536.
|
[29] |
CHEN X Y L, MILIOTO A, PALAZZOLO E, et al. SuMa++: efficient LiDAR-based semantic SLAM[C]//Proceedings of 2019 IEEE/RSJ International Conference on Intelligent Robots and Systems. Macau: IEEE, 2019: 4530-4537.
|
[30] |
TAO Zhongxing, XUE Jianru, WANG Di, et al. An adaptive invariant EKF for map-aided localization using 3D point cloud[J]. IEEE Transactions on Intelligent Transportation Systems, 2022, 23(12): 24057-24070.
|
[31] |
XU Wei, CAI Yixi, HE Dongjiao, et al. FAST-LIO2: fast direct LiDAR-inertial odometry[J]. IEEE Transactions on Robotics, 2022, 38(4): 2053-2073.
|
[32] |
EO Y, PYEON M, KIM S, et al. Coregistration of terrestrial LiDAR points by adaptive scale-invariant feature transformation with constrained geometry[J]. Automation in construction, 2012, 25: 49-58.
|
[33] |
SOFONIA J J, PHINN S, ROELFSEMA C, et al. Modelling the effects of fundamental UAV flight parameters on LiDAR point clouds to facilitate objectives-based planning[J]. ISPRS Journal of Photogrammetry and Remote Sensing, 2019, 149: 105-118.
|
[34] |
HU Han, DING Yulin, ZHU Qing, et al. An adaptive surface filter for airborne laser scanning point clouds by means of regularization and bending energy[J]. ISPRS Journal of Photogrammetry and Remote Sensing, 2014, 92: 98-111.
|
[35] |
CHEN Honghua, WEI Zeyong, LI Xianzhi, et al. RePCD-net: feature-aware recurrent point cloud denoising network[J]. International Journal of Computer Vision, 2022, 130(3): 615-629.
|
[36] |
DE SILVA EDIRIMUNI D, LU Xuequan, SHAO Zhiwen, et al. IterativePFN: true iterative point cloud filtering[C]//Proceedings of 2023 IEEE/CVF Conference on Computer Vision and Pattern Recognition. Vancouver: IEEE, 2023: 13530-13539.
|
[37] |
LU Dening, LU Xuequan, SUN Yangxing, et al. Deep feature-preserving normal estimation for point cloud filtering[J]. Computer-Aided Design, 2020, 125: 102860.
|
[38] |
PISTILLI F, FRACASTORO G, VALSESIA D, et al. Learning robust graph-convolutional representations for point cloud denoising[J]. IEEE Journal of Selected Topics in Signal Processing, 2021, 15(2): 402-414.
|
[39] |
GAO Jianlan, CHEN Yiping, JUNIOR J M, et al. Rapid extraction of urban road guardrails from mobile LiDAR point clouds[J]. IEEE Transactions on Intelligent Transportation Systems, 2022, 23(2): 1572-1577.
|
[40] |
BAI Chunge, XIAO Tao, CHEN Yajie, et al. Faster-LIO: lightweight tightly coupled LiDAR-inertial odometry using parallel sparse incremental voxels[J]. IEEE Robotics and Automation Letters, 2022, 7(2): 4861-4868.
|
[41] |
LI Kailai, LI Meng, HANEBECK U D. Towards high-performance solid-state-LiDAR-inertial odometry and mapping[J]. IEEE Robotics and Automation Letters, 2021, 6(3): 5167-5174.
|