624
Views
29
CrossRef citations to date
0
Altmetric
Original Articles

Efficient method for lossless LIDAR data compression

&
Pages 2507-2518 | Received 10 Aug 2009, Accepted 21 Dec 2009, Published online: 29 Apr 2011

Keep up to date with the latest research on this topic with citation updates for this article.

Read on this site (3)

PL. Chithra & A. Christoper Tamilmathi. (2020) 3D LiDAR point cloud image codec based on Tensor. The Imaging Science Journal 68:1, pages 1-10.
Read now
David Deibe, Margarita Amor & Ramón Doallo. (2019) Supporting multi-resolution out-of-core rendering of massive LiDAR point clouds through non-redundant data structures. International Journal of Geographical Information Science 33:3, pages 593-617.
Read now
Bogdan Lipuš & Borut Žalik. (2015) Lossless progressive compression of LiDAR data using hierarchical grid level distribution. Remote Sensing Letters 6:3, pages 190-198.
Read now

Articles from other publishers (26)

Tadeáš Fryčák, Tomáš Fürst, Radoslav Koprna, Zdeněk Špíšek, Jakub Miřijovský & Jan F. Humplík. (2024) Crop growth dynamics: Fast automatic analysis of LiDAR images in field-plot experiments by specialized software ALFA. PLOS ONE 19:1, pages e0297153.
Crossref
Ricardo Roriz, Jorge Cabral & Tiago Gomes. (2022) Automotive LiDAR Technology: A Survey. IEEE Transactions on Intelligent Transportation Systems 23:7, pages 6282-6297.
Crossref
Faisal Hawlader & Raphael Frank. (2021) Towards a Framework to Evaluate Cooperative Perception for Connected Vehicles. Towards a Framework to Evaluate Cooperative Perception for Connected Vehicles.
Fayez Tarsha Kurdi, Zahra Gharineiat, Glenn Campbell, Emon Kumar Dey & Mohammad Awrangjeb. (2021) Full Series Algorithm of Automatic Building Extraction and Modelling From LiDAR Data. Full Series Algorithm of Automatic Building Extraction and Modelling From LiDAR Data.
Ulfat Imdad, Mirza Tahir Ahmed, Muhammad Asif & Hanan Aljuaid. (2021) 3D point cloud lossy compression using quadric surfaces. PeerJ Computer Science 7, pages e675.
Crossref
Huan Yin, Yue Wang, Li Tang, Xiaqing Ding, Shoudong Huang & Rong Xiong. (2021) 3D LiDAR Map Compression for Efficient Localization on Resource Constrained Vehicles. IEEE Transactions on Intelligent Transportation Systems 22:2, pages 837-852.
Crossref
Jean-Romain Roussel, David Auty, Nicholas C. Coops, Piotr Tompalski, Tristan R.H. Goodbody, Andrew Sánchez Meador, Jean-François Bourdon, Florian de Boissieu & Alexis Achim. (2020) lidR: An R package for analysis of Airborne Laser Scanning (ALS) data. Remote Sensing of Environment 251, pages 112061.
Crossref
Borut Žalik, Domen Mongus, Niko Lukač & Krista Rizman Žalik. (2020) Can burrows-Wheeler transform be replaced in chain code compression?. Information Sciences 525, pages 109-118.
Crossref
Ahmed Kotb, Safaa Hassan & Hesham Hassan. (2018) A Comparative Study Among Various Algorithms for Lossless Airborne LiDAR Data Compression. A Comparative Study Among Various Algorithms for Lossless Airborne LiDAR Data Compression.
Bogdan Lipuš & Borut Žalik. (2018) Robust watermarking of airborne LiDAR data. Multimedia Tools and Applications 77:21, pages 29077-29097.
Crossref
Grzegorz Jóźków. (2017) Terrestrial Laser Scanning Data Compression Using JPEG-2000. PFG – Journal of Photogrammetry, Remote Sensing and Geoinformation Science 85:5, pages 293-305.
Crossref
Hang Yin & Christian Berger. (2017) Mastering data complexity for autonomous driving with adaptive point clouds for urban environments. Mastering data complexity for autonomous driving with adaptive point clouds for urban environments.
Xianxiong Liu, Yue Wang, Qingwu Hu & Dengbo Yu. (2016) A scan-line-based data compression approach for point clouds: Lossless and effective. A scan-line-based data compression approach for point clouds: Lossless and effective.
Hamidreza Houshiar & Andreas Nuchter. (2015) 3D point cloud compression using conventional image compression for efficient data transmission. 3D point cloud compression using conventional image compression for efficient data transmission.
Alun Evans, Javi Agenjo & Josep Blat. (2015) Combined 2D and 3D web-based visualisation of on-set big media data. Combined 2D and 3D web-based visualisation of on-set big media data.
Wai Yeung Yan, Ahmed Shaker & Nagwa El-Ashmawy. (2015) Urban land cover classification using airborne LiDAR data: A review. Remote Sensing of Environment 158, pages 295-310.
Crossref
Grzegorz Jóźków, Charles Toth, Mihaela Quirk & Dorota Grejner-Brzezinska. (2015) Compression strategies for LiDAR waveform cube. ISPRS Journal of Photogrammetry and Remote Sensing 99, pages 1-13.
Crossref
Alun Evans, Javi Agenjo & Josep Blat. (2014) Web-based visualisation of on-set point cloud data. Web-based visualisation of on-set point cloud data.
Selma Rizvic, Vensada Okanovic, Aida Sadzak, Domen Mongus & Luka Pavlic. (2014) LiDAR based terrains for virtual cultural heritage applications. LiDAR based terrains for virtual cultural heritage applications.
M. Kuder & B. Žalik. (2013) Improving LiDAR compression efficiency on small packets. Electronics Letters 49:25, pages 1637-1638.
Crossref
Marko Kuder, Marjan Šterk & Borut Žalik. (2013) Point-based rendering optimization with textured meshes for fast LiDAR visualization. Computers & Geosciences 59, pages 181-190.
Crossref
Eetu Puttonen, Matti Lehtomäki, Harri Kaartinen, Lingli Zhu, Antero Kukko & Anttoni Jaakkola. (2013) Improved Sampling for Terrestrial and Mobile Laser Scanner Point Cloud Data. Remote Sensing 5:4, pages 1754-1773.
Crossref
Martin Isenburg. (2013) LASzip. Photogrammetric Engineering & Remote Sensing 79:2, pages 209-217.
Crossref
Sašo Pečnik, Domen Mongus & Borut Žalik. 2013. Human-Computer Interaction and Knowledge Discovery in Complex, Unstructured, Big Data. Human-Computer Interaction and Knowledge Discovery in Complex, Unstructured, Big Data 366 385 .
B. Lipuš & B. Žalik. (2012) Lossy LAS file compression using uniform space division. Electronics Letters 48:20, pages 1278.
Crossref
Marko Kuder & Borut alik. (2011) Web-Based LiDAR Visualization with Point-Based Rendering. Web-Based LiDAR Visualization with Point-Based Rendering.

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.