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Robust extrinsic parameter calibration of 3D LIDAR using lie algebras

  • Chao Xia
  • , Yanqing Shen
  • , Tangyike Zhang
  • , Songyi Zhang
  • , Yongbo Huo
  • , Shitao Chen
  • , Nanning Zheng
  • Xi'an Jiaotong University

科研成果: 书/报告/会议事项章节会议稿件同行评审

10 引用 (Scopus)

摘要

In the field of autonomous driving, multi-beam light detection and ranging (3D LIDAR) system and global navigation satellite system/integrated inertial navigation system (GNSS/INS) are widely used in high-definition map construction, localization and obstacle detection. As 3D LIDAR system and INS have their own coordinate systems, the calibration of the two mentioned systems is required. In this paper, a novel algorithm for calibrating the coordinate system of 3D LIDAR and INS is proposed, which consists of three parts. The first procedure is to project two point clouds to the world coordinate system based on the initial transform matrix between 3D LIDAR and INS with the real-time data from INS. Then optimal point-to-point correspondences can be found between two frames of point cloud data through registration method. Finally, the loss function is constructed with the sum of the Euclidean distances of the corresponding points and optimized by using perturbation model of Lie algebras, so as to obtain the optimal transform matrix. With different given initial calibration parameters, test results of both simulation and real experiments validate the proposed algorithm and quantify its accuracy and robustness.

源语言英语
主期刊名2019 IEEE Intelligent Vehicles Symposium, IV 2019
出版商Institute of Electrical and Electronics Engineers Inc.
1775-1781
页数7
ISBN(电子版)9781728105604
DOI
出版状态已出版 - 6月 2019
活动30th IEEE Intelligent Vehicles Symposium, IV 2019 - Paris, 法国
期限: 9 6月 201912 6月 2019

丛书

姓名IEEE Intelligent Vehicles Symposium, Proceedings
2019-June

会议

会议30th IEEE Intelligent Vehicles Symposium, IV 2019
国家/地区法国
Paris
时期9/06/1912/06/19

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