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UAV Position Estimation using a LiDAR-based 3D Object Detection Method
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UAV Position Estimation using a LiDAR-based 3D Object Detection Method
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This paper explores the use of applying a deep learning approach for 3D object detection to compute the relative position of an Unmanned Aerial Vehicle (UAV) from an Unmanned Ground Vehicle (UGV) equipped with a LiDAR sensor in a GPS-denied environment. This was achieved by evaluating the LiDAR sensor's data through a 3D detection algorithm (PointPillars). The PointPillars algorithm incorporates a column voxel point-cloud representation and a 2D Convolutional Neural Network (CNN) to generate distinctive point-cloud features representing the object to be identified, in this case, the UAV. The current localization method utilizes point-cloud segmentation, Euclidean clustering, and predefined heuristics to obtain the relative position of the UAV. Results from the two methods were then compared to a reference truth solution.
Forward citations
Cited by 1 Pith paper
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M3F-UAV: A Missing-Modality Multimodal Foundation Model for Low-Altitude Wireless Sensing
A missing-modality multimodal foundation model fuses RGB, depth, LiDAR, and CSI to support UAV localization, beam prediction, and CSI prediction with graceful degradation when a sensor is missing.
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