摄影测量学与遥感

定角圆锥扫描式机载激光测深系统定位模型与精度评价

  • 李凯 ,
  • 张永生 ,
  • 童晓冲 ,
  • 申二华
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  • 信息工程大学地理空间信息学院, 河南郑州 450001
李凯(1992-),男,硕士生,研究方向为机载激光测深技术。

收稿日期: 2015-04-01

  修回日期: 2016-01-07

  网络出版日期: 2016-04-28

基金资助

国家自然科学基金(41201392);信息工程大学地理空间信息学院硕士学位论文创新创优基金(XS201502)

Positioning Model and Accuracy Evaluation of Conical Scanning Airborne Laser Bathymetry System

  • LI Kai ,
  • ZHANG Yongsheng ,
  • TONG Xiaochong ,
  • SHEN Erhua
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  • Institute of Survering and Mapping, Information Engineering University, Zhengzhou 450001, ChinaAbstract

Received date: 2015-04-01

  Revised date: 2016-01-07

  Online published: 2016-04-28

Supported by

The National Natural Science Foundation of China(No.41201392);Master Thesis Innovation Foundation of Geospatial Information Institute of Information Engineering University(No.XS201502)

摘要

从定角圆锥扫描式机载激光测深系统激光测距仪内部结构出发,推导了棱镜、大气、海水中激光光线方向矢量方程,结合GPS/INS定位定姿系统,推导出激光脚点在成图坐标系中的定位模型。充分考虑对机载激光测深系统定位精度产生影响的各个因素,通过误差传播定律给出了圆锥扫描式机载激光测深系统的综合精度评价模型。参照国际上应用广泛的相关仪器系统参数、指标,对机载激光测深系统的定位精度进行实际计算,并对定位模型中涉及的主要误差源进行分析和讨论。

本文引用格式

李凯 , 张永生 , 童晓冲 , 申二华 . 定角圆锥扫描式机载激光测深系统定位模型与精度评价[J]. 测绘学报, 2016 , 45(4) : 425 -433 . DOI: 10.11947/j.AGCS.2016.20150161

Abstract

Conical scanning airborne laser bathymetry system with fixed angle is selected as a research object to deduce the vector equation of laser in the prism, the atmosphere and the water from the internal structure of the laser rangefinder. Then the vector equation is combined with GPS/INS to deduce positioning model of foot laser point in mapping coordinates. The factors that influence the positioning accuracy of the airborne laser bathymetry system are fully considered and comprehensive accuracy evaluation model of conical scanning airborne laser bathymetry system is given with the use of error propagation law. System parameters, indicators which are widely used in the world are used to calculate the positioning accuracy of airborne laser bathymetry system. The main sources of error involved in positioning model are analyzed and discussed.

参考文献

[1] 江月松.机载GPS、姿态和激光扫描测距集成定位系统的精确定位方程、误差分析与精度评估[J]. 遥感学报, 2001, 5(4):241-247. JIANG Yuesong. A Rigorous Positioning Equation and It's Error Analysis and Precision Evaluation for Integrated Positioning System of Airborne GPS, INS and Laser Scanning Ranging[J]. Journal of Remote Sensing, 2001, 5(4):241-247.
[2] 翟国君, 王克平, 刘玉红. 机载激光测深技术[J]. 海洋测绘, 2014, 34(2):72-75. ZHAI Guojun, WANG Keping, LIU Yuhong. Technology of Airborne Laser Bathymetry[J]. Hydrographic Surveying and Charting, 2014, 34(2):72- 75.
[3] 尤红建, 江月松, 李树楷. 机载遥感直接对地定位的误差分析和精度估计[J]. 测绘学报, 1998, 27(1):86-91. YOU Hongjian, JIANG Yuesong, LI Shukai. Error Analysis and Accuracy Estimation of Airborne Remote Sensing with Air-to-ground Positioning System[J]. Acta Geodaetica et Cartographica Sinica, 1998, 27(1):86-91.
[4] 刘少创, 邵晖, 向茂生, 等. 机载三维成像仪的定位原理与误差分析[J]. 测绘学报, 1999, 28(2):121-127. LIU Shaochuang, SHAO Hui, XIANG Maosheng, et al. Positioning Principles and Accuracy of Airborne Laser-ranging and Multispectral-imaging Mapping System[J]. Acta Geodaetica et Cartographica Sinica, 1999, 28(2):121-127.
[5] 尤红建, 刘少创, 刘彤, 等. 机载三维成像仪系统中激光点位置的解算及应用[J]. 遥感技术与应用, 2000, 15(3):141-145. YOU Hongjian, LIU Shaochuang, LIU Tong, et al. Calculating the Position of Laser Points of Airborne 3D Image and It's Application[J]. Remote Sensing Technology and Application, 2000, 15(3):141- 145.
[6] 刘基余, 李松. 机载激光测深系统测深误差源的研究[J]. 武汉测绘科技大学学报, 2000, 25(6):491- 495. LIU Jiyu, LI Song. Application on Error Sources Surveying Sea-water Depths with an Airborne Laser Sounding System[J]. Journal of Wuhan Technical University of Surveying and Mapping, 2000, 25(6):491- 495.
[7] 黄谟涛, 翟国君, 谢锡君, 等. 多波束和机载激光测深位置归算及载体姿态影响研究[J]. 测绘学报, 2000, 29(1):82-88. HUANG Motao,ZHAI Guojun,XIE Xijun. The Influence of Carrier's Attitude and the Position Reduction in Multibeam Echosounding and Airborne Laser Depth Sounding. Acta Geodaetica et Cartographica Sinica, 2000, 29(1):82-88.
[8] FRIESS P. Toward a Rigorous Methodology for Airborne Laser Mapping[C]//Proceedings of EuroCOW. Castelldefels:[s.n.], 2006:25-27.
[9] SKALOUD J, SCHAER P. Towards Automated LiDAR Boresight Self-calibration[C]//Proceedings of the 5th International Symposium on Mobile Mapping Technology. Padova:MMS, 2007.
[10] GONSALVES M O. A Comprehensive Uncertainty Analysis and Method of Geometric Calibration for a Circular Scanning Airborne Lidar[D]. Hattiesburg:The University of Southern Mississippi, 2010.
[11] MAY N C. A Rigorous Approach to Comprehesive Performance Analysis of State-of-the-art Airborne Mobile Mapping Systems[D]. Columbo:The Ohio State University,2008.
[12] 任来平, 赵俊生, 翟国君, 等. 机载激光测深海面扫描轨迹计算与分析[J]. 武汉大学学报(信息科学版), 2002, 27(2):138-142. REN Laiping, ZHAO Junsheng, ZHAI Guojun, et al. Scanning-track Computation and Analysis for Airborne Laser Depth Sounding[J]. Geomatics and Information Science of Wuhan University, 2002, 27(2):138-142.
[13] FUCHS E, MATHUR A. Utilizing Circular Scanning in the CZMIL System[C]//Proceedings of the SPIE 7695, Algorithms and Technologies for Multispectral, Hyperspectral, and Ultraspectral Imagery XVI. Orlando, Florida:SPIE, 2010.
[14] GLASSNER A S. An Introduction to Ray Tracing[M]. London:Academic Press, 1989.
[15] 张靖, 江万寿, 姜三. 基于虚拟点模型的机载LiDAR系统自动检校方法[J]. 测绘学报, 2013, 42(3):389-396. ZHANG Jing, JIANG Wanshou, JIANG San. Automated Airborne LiDAR System Calibration Using Virtual Tie Point Model[J]. Acta Geodaetica et Cartographica Sinica, 2013, 42(3):389-396.
[16] HABIB A F, AL-DURGHAM M,KERSTING A P, et al. Error Budget of LiDAR Systems and Quality Control of the Derived Point Cloud[C]//Proceedings of the 21st International Society for Photogrammetry and Remote Sensing Congress, Commission I. Beijing:[s.n.], 2008, 37(Part B).
[17] 江延川.解析摄影测量学[Z]. 郑州:解放军测绘学院, 1991. JIANG Yanchuan. Analytical Photogrammetry[Z]. Zhengzhou:Zhengzhou Institute of Surveying and Mapping, 1991.
[18] 叶修松. 机载激光水深探测技术基础及数据处理方法研究[D]. 郑州:信息工程大学, 2010. YE Xiusong. Research on Principle and Data Processing Methods of Airborne Laser Bathymetric Technique[D].Zhengzhou:Information Engineering University, 2010.
[19] BURMAN H. Calibration and Orientation of Airborne Image and Laser Scanner Data Using GPS and INS[D]. Stockholm:Royal Institute of Technology, 2000.
[20] SKALOUD J, LICHTI D. Rigorous Approach to Bore-sight Self-calibration in Airborne Laser Scanning[J]. ISPRS Journal of Photogrammetry and Remote Sensing, 2006, 61(1):47-59.
[21] GUENTHER G C. Airborne Laser Hydrography:System Design and Performance Factors[R]. Rockville MD:National Oceanic and Atmospheric Administration, 1985.
[22] THOMAS R W L, GUENTHER G C. Water Surface Detection Strategy for an Airborne Laser Bathymeter[C]//RICHARD W. Proceedings of SPIE 1302, Ocean Optics X. Orlando:International Society for Optics and Photonics, 1990:597-611.
[23] GUENTHER G C, BROOKS M W, LAROCQUE P E. New Capabilities of the "SHOALS" Airborne Lidar Bathymeter[J]. Remote Sensing of Environment, 2000, 73(2):247-255.
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