期刊文献+

视觉测量仿真系统及其网络布局优化研究 被引量:1

Research on simulation system and network optimization for videogrammetry
原文传递
导出
摘要 为了便于在开展测量前对测量方案和各环节进行分析、评价,设计了完整的视觉测量仿真系统,该系统可以为测量任务提供摄影网络布局、精度分析、测量模拟等多项功能。由于多站位、多角度的网络布局结构是提高视觉测量精度和可靠性的重要手段,对仿真系统中网络优化的目标、原理和方法进行了研究,针对网络优化设计了遗传算法。通过在薄膜充气可展开天线面形测量中的应用,证明了该系统的可行性。 In order to analyze and assess the configurations and stages,the whole simulation system is designed for videogrammetry,which can provide network configurations,precision analyzing measurement simulation,etc.Moreover,multi-station and multi-view network configurations are the main means for precision improvement,so the optimal objectives,principal and method of network configuration are studied and the special genetic algorithm is designed.The feasibility of system is testified by its application in the measurement of gossamer inflatable antenna.
出处 《光学技术》 EI CAS CSCD 北大核心 2008年第1期36-40,共5页 Optical Technique
基金 国家自然科学基金资助项目(50475176) 北京市自然科学基金/北京市教寻科技发展计划重点项目(KZ200511232019) 北京市属市管高等学校人才强教计划资助项目(PXM2007-014215-044674) 北京市重点实验室(机电系统测控)开放课题资助项目
关键词 视觉测量 仿真系统 网络优化 遗传算法 videogrammetry simulation system network optimization genetic algorithm
  • 相关文献

参考文献7

  • 1王援朝.充气天线结构技术概述[J].电讯技术,2003,43(2):6-11. 被引量:14
  • 2Tababanis K A, Allen P K, Tsai R Y. A survey of sensor planning in computer vision [ J ]. IEEE Transactions on Robotics and Automation, 1995,11(1): 86--104.
  • 3Mason S. Conceptual model of the convergent multistation network configumtion task[J]. Photogrammetrie Record, 1995, 15(86): 277--299.
  • 4Wang J, Lu N G, Dong M L, et al, A new method for linear camera calibration and nonlinear distortion correction[ C]. 3rd International Symposium on Precision Mechanical Measurements, Proceedings of SPIE, 2006, 6280.
  • 5Wang J, Lu N g, Deng W Y, et al. Research on network configurations of videogrammetry for the profile of gossamer inflatable antenna[C]. 6th International Symposium on Instrumentation and Control Technology, 2006, 6357.
  • 6Olague G, Molar R. Optimal camera placement for accurate reconstruction[J]. Pattern Recognition, 2002, 35(4): 927--944.
  • 7Holland J H. Adaptation in natural and artificial systems[M]. MI: University of Michigan Press, 1975.

二级参考文献9

  • 1[1]R E Freeland.Inflatable Deployable Space Structures Technology Summary[A].IAF- 98-5.01[C].
  • 2[2]Cassapakes,Love C G,Palisoc A W,A L.Inflatable Space Antenna,A Brief Overview[A].Space Antennas.Aerospace Conference[C],IEEE 1998,Volume:3,1516~1519.
  • 3[3]S L Veldman.Inflatable Structures in Aerospace Engineering, An Overview[EB/OL].2000.
  • 4[4]David P Cadogan.Deployment Control Mechanisms for Inflatable Space Structres[A].33rd Aerospace Mechanisms Conference[C].May 1999.
  • 5[5]Richard S Pappa.Photogrammetry of a 5m Inflatable Space Antenna with Consumer Digital Cameras[EB/OL].2000.
  • 6[6]Large,Lightweight Deployable Antennas[A].Earth Science Enterprise Technology Planning Workshop[C].23~24 January 2001.
  • 7[7]A Hybrid Inflatable Dish Antenna System for Spacecraft[A].42nd AIAA/ASME/ASCE/AHS/ASC Structures,Structural Dynamics,and Materials Conference &Exhibit[C].AIAA Gossamer Spacecraft Forum.April 16~19,2001.
  • 8[8]R E Freeland.Large Inflatable Deployable Antenna Flight Experiment Results[A].IAF Paper 97-1.3.01[C],1997.
  • 9[9]R E Freeland.Significance of the Inflatable Antenna Experiment Technology[A].39nd AIAA/ASME/ASCE/AHS/ASC Structures,Structural Dynamics and Materials Conference[C].AIAA/ASME/AHS Adaptive Structures Forum,April 20~23,1998.

共引文献13

同被引文献5

引证文献1

二级引证文献2

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部