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Classifying 3D objects in LiDAR point clouds with a back-propagation neural network.

, , , , and . Hum. centric Comput. Inf. Sci., (2018)

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CNN-based 3D object classification using Hough space of LiDAR point clouds., , , , , and . Hum. centric Comput. Inf. Sci., (2020)A Prior Estimation of the Spatial Distribution Parameter of Soil Moisture Storage Capacity Using Satellite-Based Root-Zone Soil Moisture Data., , , and . Remote Sensing, 11 (21): 2580 (2019)An Implementation of VR Chemistry Experiment System., , , and . BDIOT, page 205-208. ACM, (2017)Taking the pulse of COVID-19: a spatiotemporal perspective., , , , , , , , , and 26 other author(s). Int. J. Digit. Earth, 13 (10): 1186-1211 (2020)A 3D Obstacle Classification Method in Point Clouds Using K-NN., , , , , and . BDIOT, page 76-79. ACM, (2018)DGCB-Net: Dynamic Graph Convolutional Broad Network for 3D Object Recognition in Point Cloud., , , , and . Remote. Sens., 13 (1): 66 (2021)A Fast Spatial Clustering Method for Sparse LiDAR Point Clouds Using GPU Programming., , , , , and . Sensors, 20 (8): 2309 (2020)Classifying 3D objects in LiDAR point clouds with a back-propagation neural network., , , , and . Hum. centric Comput. Inf. Sci., (2018)Pointwise CNN for 3D Object Classification on Point Cloud., , , and . J. Inf. Process. Syst., 17 (4): 787-800 (2021)A Fast Planner Detection Method in LiDAR Point Clouds Using GPU-based RANSAC., , , , and . UMCit@KDD, volume 2227 of CEUR Workshop Proceedings, page 28-35. CEUR-WS.org, (2018)