Volume 45 Issue 2
Mar.  2016
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He Zhiping, Qin Xiage, Xu Yingyu. Staring acousto-optic spectral imaging technology with area FPA and discussion on its application of unmanned aerial vehicle(UAV) platforms[J]. Infrared and Laser Engineering, 2016, 45(2): 203001-0203001(7). doi: 10.3788/IRLA201645.0203001
Citation: He Zhiping, Qin Xiage, Xu Yingyu. Staring acousto-optic spectral imaging technology with area FPA and discussion on its application of unmanned aerial vehicle(UAV) platforms[J]. Infrared and Laser Engineering, 2016, 45(2): 203001-0203001(7). doi: 10.3788/IRLA201645.0203001

Staring acousto-optic spectral imaging technology with area FPA and discussion on its application of unmanned aerial vehicle(UAV) platforms

doi: 10.3788/IRLA201645.0203001
  • Received Date: 2016-01-10
  • Rev Recd Date: 2016-01-23
  • Publish Date: 2016-02-25
  • In recent years,light-weight unmanned airborne spectral imaging technology has become hotspot research and attracted much attention in the field of spectral remote sensing technology at home and abroad owing to its plenty of advantages, such as free route, low cost. The mature application of staring acousto-optic spectral imaging technology with area FPA injects new momentum into light-weight unmanned aerial vehicle(UAV) remote sensing area. Firstly, the technical approach of staring spectral imaging technology was introduced, and then acousto-optic spectral imaging technology was discussed combined with lunar exploration application. After the completion of developing the UAV payload prototype, the application experiment had been carried out, and the test data was analyzed and evaluated. Finally, the application of light-weight UAV payload based on acousto-optic spectral imaging technology was also discussed and looked ahead in the paper.
  • [1] He Zhiping. Reseach on key technique of geometry and spectral calibration of pushbroom hyperspectral imager[D]. Shanghai:Shanghai Institute of Technical Physics, Chinese Academy of Sciences, 2009.(in Chinese)何志平. 推帚式成像光谱仪几何及光谱定标关键技术研究[D]. 上海:中国科学院上海技术物理研究所, 2009.
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    [4] Nieke J, Schwqrzer H, Neumann A, et al. Imaging spaceborne and airborne sensor systems in the beginning of the next century[C]//SPIE, 1997, 3221:22-26.
    [5] Barnsley M J, Settle J J, Cutter M A, et al. The PROBA/CHRIS mission:a low-cost smallsat for hyperspectral multiangle observations of the earth surface and atmosphere[J]. Geoscience and Remote Sensing, IEEE Transactions on, 2004, 42(7):1512-1520.
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    [8] Liu Shuqin, Wang Binyong, Xu Rui, et al. Broad-spectral-range AOTF performance analysis system based on multi-band acquisition[J]. Infrared and Laser Engineering, 2015, 44(4):1343-1348.(in Chinese)刘书勤, 王斌永, 徐睿, 等. 基于多谱段集成检测的宽光谱AOTF性能测试系统[J]. 红外与激光工程, 2015, 44(4):1343-1348.
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    [11] Liu Yujuan, Cui Jicheng, Bayan Heshig, et al. Design and application of imaging spectrometer with convex grating[J]. Optics and Precision Engineering, 2012, 20(1):52-57.(in Chinese)刘玉娟, 崔继承, 巴音贺希格, 等. 凸面光栅成偈光谱仪的研制与应用[J]. 光学精密工程, 2012, 20(1):52-57.
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    [16] He Zhiping, Wang Binyong, Lv Gang, et al. Visible and Near-Infrared Imaging Spectrometer(VNIS) and its preliminary results from the Chang'E 3 Project[J]. Rev Sci Instrum, 2014, 86:8.
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    [18] He Zhiping, Wang Binyong, Lv Gang, et al. Operating principles and detection characteristics of Visible and Near-Infrared Imaging Spectrometer(VNIS) in Chang'e 3[J]. Res Astron Astrophys, 2014, 14(12):1567.
    [19] He Zhiping, Shu Rong, Wang Jianyu. Imaging spectro-meter based on AOTF and its prospects in deep-space exploration application[C]//SPIE, 2011, 8196:819625.
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    [21] Ge Mingfeng. Hyperspectrcal imagery remote sensing technology based on lightweight unmanned aerial vehicle[D]. Shanghai:Shanghai Institute of Technical Physics, Chinese Academy of Sciences, 2015.(in Chinese)葛明锋. 基于轻小型无人机的高光谱成像系统研究[D].上海:中国科学院上海技术物理研究所, 2015.
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    [25] Xian Guang, Yan Changxiang. Analysis of attitude change impact on aerial push-broom imaging[J]. Infrared and Laser Engineering, 2015, 44(8):2478-2483.(in Chinese)贤光,颜昌翔. 姿态变化对航空推扫式成像的影响分析[J]. 红外与激光工程, 2015, 44(8):2478-2483.
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Staring acousto-optic spectral imaging technology with area FPA and discussion on its application of unmanned aerial vehicle(UAV) platforms

doi: 10.3788/IRLA201645.0203001
  • 1. Key Laboratory of Space Active Opto-Electronics Technology,CAS,Shanghai Institute of Technical Physics,Chinese Academy of Sciences,Shanghai 200083,China

Abstract: In recent years,light-weight unmanned airborne spectral imaging technology has become hotspot research and attracted much attention in the field of spectral remote sensing technology at home and abroad owing to its plenty of advantages, such as free route, low cost. The mature application of staring acousto-optic spectral imaging technology with area FPA injects new momentum into light-weight unmanned aerial vehicle(UAV) remote sensing area. Firstly, the technical approach of staring spectral imaging technology was introduced, and then acousto-optic spectral imaging technology was discussed combined with lunar exploration application. After the completion of developing the UAV payload prototype, the application experiment had been carried out, and the test data was analyzed and evaluated. Finally, the application of light-weight UAV payload based on acousto-optic spectral imaging technology was also discussed and looked ahead in the paper.

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