Considerations of data handling system of a spaceborne imaging spectrometer with onboard data compression

被引:0
|
作者
Qian, Shen-En [1 ]
Bergeron, Martin [1 ]
Levesque, Josee [2 ]
Oswald, Peter [3 ]
Black, Colin [4 ]
Hollinger, Allan [1 ]
机构
[1] Canadian Space Agcy, St Hubert, PQ J3Y 8Y9, Canada
[2] Def Res & Dev Canada, Quebec City, PQ G3J 1X5, Canada
[3] PD Oswald Enterprise, Rigaud, PQ J0P 1P0, Canada
[4] EMS Technol, Ste Anne De Bellevue, PQ H9X 3R2, Canada
来源
关键词
D O I
10.5589/m07-065
中图分类号
TP7 [遥感技术];
学科分类号
081102 ; 0816 ; 081602 ; 083002 ; 1404 ;
摘要
This paper outlines the data handling system (DHS) of a spaceborne hyperspectral imager with an onboard data compressor. The data compression techniques to be used are successive approximation multistage vector quantization and hierarchical self-organizing cluster vector quantization. Considerations and implementation aspects of the DHS related to the onboard data compression are addressed. The impact of anomalies ( spikes, saturation, etc.)in the raw data on compression performance is evaluated for the purpose of determining whether or not onboard data scrubbing is required before compression. The evaluation results show that anomalies in raw data have no significant effect on compression. This paper evaluates the impact of preprocessing and the conversion of raw data to radiance units on data compression using remote sensing applications to examine whether or not they should be applied on board before compression. The evaluation results show that preprocessing and radiometric conversion applied either before or after compression have no impact on an application using leaf area index but have impact on a target detection application using spectral unmixing. This paper also examines the combination of the two compression techniques to see if there is a performance improvement over a single technique. The experimental results show that the combined compression system does not perform better than either technique alone. Lastly, the resilience of the two compression techniques against bit errors caused by single event upsets is examined. The experimental results show that there is no loss of data fidelity when the error rate is <= 10(-6).
引用
收藏
页码:S12 / S28
页数:17
相关论文
共 50 条
  • [31] Handling chunks of image data in the Gemini Data Handling System
    Dunn, J
    Jaeger, S
    Hill, N
    Gaudet, S
    Cockayne, S
    ASTRONOMICAL DATA ANALYSIS SOFTWARE AND SYSTEMS VIII, 1999, 172 : 167 - 170
  • [32] IMPACT OF ONBOARD PROCESSING ON DATA-HANDLING FOR SPACE APPLICATIONS
    PELLET, M
    ROWLES, JB
    AERONAUTICAL JOURNAL, 1979, 83 (827): : 437 - 442
  • [33] Design of Central Management & Control Unit for Onboard High-Speed Data Handling System
    LI, Yan-qin
    JIN, Sheng-zhen
    NING, Shu-nian
    Journal of China University of Mining and Technology, 2007, 17 (01): : 68 - 72
  • [35] Data handling considerations for large microcalorimeter arrays
    Boyce, KR
    Irwin, KA
    Figueroa-Feliciano, E
    Finkbeiner, FM
    Gendreau, KC
    Kelley, RL
    Lindeman, MA
    Porter, FS
    Stahle, CK
    Szymkowiak, AE
    NEW CENTURY OF X-RAY ASTRONOMY, 2001, 251 : 522 - 523
  • [36] Data Management and Data Handling System.
    Plessmann, K.W.
    Destunis, S.
    Angewandte Informatik/Applied Informatics, 1974, 16 (01): : 15 - 22
  • [37] Palaeoproterozoic Talc and Clay Mapping Using Spaceborne Imaging Spectrometer Prisma Data Through Derived Spectral Indices
    Jain, Ronak
    Workshop on Hyperspectral Image and Signal Processing, Evolution in Remote Sensing, 2023,
  • [38] ESTIMATING DUST ON SNOW - APPLICATION OF A COUPLED ATMOSPHERE-SURFACE MODEL TO SPACEBORNE EMIT IMAGING SPECTROMETER DATA
    Bohn, N.
    Bair, E. H.
    Brodrick, P. G.
    Carmon, N.
    Green, R. O.
    Painter, T. H.
    Thompson, D. R.
    IGARSS 2023 - 2023 IEEE INTERNATIONAL GEOSCIENCE AND REMOTE SENSING SYMPOSIUM, 2023, : 685 - 688
  • [39] Detection of keystone in imaging spectrometer data
    Neville, RA
    Sun, LX
    Staenz, K
    ALGORITHMS AND TECHNOLOGIES FOR MULTISPECTRAL, HYPERSPECTRAL, AND ULTRASPECTRAL IMAGERY X, 2004, 5425 : 208 - 217
  • [40] Geocoding methodology for Imaging Spectrometer data
    Hausold, A
    PROCEEDINGS OF THE FINAL RESULTS WORKSHOP ON DAISEX (DIGITAL AIRBORNE SPECTROMETER EXPERIMENT), 2001, 499 : 91 - 96