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A new denoising method for photon-counting LiDAR data with different surface types and observation conditions

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摘要 Spaceborne photon-counting LiDAR is significantly affected by noise,and existing denoising algorithms cannot be universally adapted to different surface types and topographies under all observation conditions.Accordingly,a new denoising method is presented to extract signal photons adaptively.The method includes two steps.First,the local neighborhood radius is calculated according to photons’density,then thefirst-step denoising process is completed via photons’curvature feature based on KNN search and covariance matrix.Second,the local photonfiltering direction and threshold are obtained based on thefirst-step denoising results by RANSAC and elevation frequency histogram,and the local dense noise photons that thefirst-step cannot be identified are further eliminated.The following results are drawn:(1)experimental results on MATLAS with different topographies indicate that the average accuracy of second-step denoising exceeds 0.94,and the accuracy is effectively improves with the number of denoising times;(2)experiments on ICESat-2 under different observation conditions demonstrate that the algorithm can accurately identify signal photons in different surface types and topographies.Overall,the proposed algorithm has good adaptability and robustness for adaptive denoising of large-scale photons,and the denoising results can provide more reasonable and reliable data for sustainable urban development.
出处 《International Journal of Digital Earth》 SCIE EI 2023年第1期1551-1567,共17页 国际数字地球学报(英文)
基金 supported by the National Key R&D Program of China under[grant number 2021YFF0704600] the National Natural Science Foundation of China under[grant number 42171352,42271365,U22A20566] the High-Level Talent Aggregation Project in Hunan Province,China-Innovation Team under[grant number 2019RS1060].
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  • 1庞勇,赵峰,李增元,周淑芳,邓广,刘清旺,陈尔学.机载激光雷达平均树高提取研究[J].遥感学报,2008,12(1):152-158. 被引量:100
  • 2HE Chunyang, SHI Peijun, CHEN Jin, Li Xiaobing, PAN Yaozhong, LI Jing, LI Yuechen & LI Jinggang Key Laboratory of Environmental Change and Natural Disaster, Ministry of Education of China, Beijing Normal University,College of Resources Science & Technology, Beijing Normal University, Beijing 100875, China.Developing land use scenario dynamics model by the integration of system dynamics model and cellular automata model[J].Science China Earth Sciences,2005,48(11):1979-1989. 被引量:22
  • 3WANG JianYu,SHU Rong,CHEN WeiBiao,JIA JianJun,WANG BingYong,HUANG GengHua,HU YiHua,HOU Xia.Laser altimeter of CE-1 payloads system[J].Science China(Physics,Mechanics & Astronomy),2010,53(10):1914-1920. 被引量:4
  • 4庞勇,李增元,陈尔学,孙国清.激光雷达技术及其在林业上的应用[J].林业科学,2005,41(3):129-136. 被引量:153
  • 5徐新良,曹明奎.森林生物量遥感估算与应用分析[J].地球信息科学,2006,8(4):122-128. 被引量:66
  • 6Abdalati W, Zwally H J, Bindschadler R, Csatho B, Farrell S L, Fricker H A, Harding D, Kwok R, Lefsky M and Markus T. 2010. The ICE- Sat-2 laser altimetry mission. Proceedings of the 1EEE, 98(5): 735- 751 [ DOI: 10.1109/JPROC.2009.2034765 ].
  • 7Anthony W Y, Stephen M A, Li S X, Shaw G B, Seas A, Dowdye E, Troupaki E, Liivap, Poulios D and Mascetti K. 2010. Spacelaser transmitter development for ICESat-2 mission. SPIE LASER Inter- national Society for Optics and Photonics. San Francisco: SPIE: 757809-757809-11 [ DOI: 10.1117/12.843342].
  • 8Awadallah M, Ghannam S, Abbott A L and Ghanem A. 2013. Active contour models for extracting ground and forest canopy curves from discrete laser altimeter data//Proceedings:l 3th International Confer- ence on LiDAR Applications for Assessing Forest Ecosystems. Bei- jing: SilviLaser: 129-136.
  • 9Axelsson P. 2000. DEM generation from laser scanner data using adaptive TIN models. International Archives of Photogrammetry and Remote Sensing, 33(134/1 ; PART 4): 111 - I 18.
  • 10Brunt K M, Neumann T A, Walsh K M and Markus T. 2014. Determina- tion of local slope on the greenland ice sheet using a multi-beam photon-counting Lidar in preparation for the ICESat-2 mission. IEEE Geoscience and Remote Sensing Letters, I 1 (5): 935 - 939 [DOI: 10.1109/LGRL.2013.2282217 ].

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