光谱学与光谱分析 |
|
|
|
|
|
Modeling and Simulation of Effect of Optical Distortion on the Large Aperture Static Imaging Spectrometer |
Lü Qun-bo1, XIANGLI Bin1, 2*, YAO Tao1, 3, JING Juan-juan1, WANG Zhong-hou1 |
1.Xi’an Institute of Optics and Precision Mechanics, Chinese Academy of Sciences, Xi’an 710119, China 2.College of Opto-Electronics, Chinese Academy of Sciences, Beijing 100190, China 3.Graduate University of Chinese Academy of Sciences, Beijing 100049, China |
|
|
Abstract As a new type Fourier transform imaging spectrometry, large aperture static imaging spectrometry (LASIS) has come forth in recent years, which has many advantages such as simple principle, high stability and so on.However, the requirement for the optical system design of LASIS was very harsh.As one of the optical aberrations, optical distortion degrades the data quality acquired by LASIS, consequently limits its applications.According to the analysis of the data acquisition principle of LASIS, the data model with the effect of optical distortion was presented, which could be used for LASIS performance pre-evaluation.Finally, the computer simlulation of the data model was achieved with supposed parameters.The simulation results indicated that the relative error more than 5% was induced in the recovery spectrum, and approximate 8 nm spectral line deviation was occurred at the long wavelength region.The results show that the 4% optical distortion was inapplicable for LASIS although it is acceptant for common optical imaging system.
|
Received: 2009-01-26
Accepted: 2009-04-28
|
|
Corresponding Authors:
XIANGLI Bin
E-mail: xiangli@opt.cn
|
|
[1] Goetz A F H, Vane G, Solomon J E, et al.Science, 1985, 228: 1147. [2] Boardman J W.International Geoscience and Remote Sensing Symposium, 1989, 4: 2069. [3] Clark R N, King T V V, Kleijwa M, et al.J.Geophys.Res., 1990, 95: 12653. [4] Curran P J.Progress in Physical Geography, 1994b, 18: 247. [5] McFee J, Ripley J, Buxton R, et al.SPIE, 1996, 2765: 476. [6] Dombrowski M, Wilson P, LaBaw C.SPIE, 1998, 3438: 286. [7] Clevers J G P W.Journal of Photogrammetry & Remote Sensing, 1999, 54: 299. [8] Davis C O.SPIE, 2002, 4816: 33. [9] Topping M, Pfeiffer J, Sparks A, et al.SPIE, 2002, 4816: 1. [10] Fitzgerald G J.Agron.J., 2004a, 96(1): 311. [11] YOU Shu-cheng, SUN Yi, LI Xiao-wen(尤淑撑, 孙 毅, 李小文).Remote Sensing Information(遥感信息), 2005, 3: 31. [12] LI Ying-hua, SUN Li-na, HU Xiao-jun, et al(李英华, 孙丽娜, 胡晓钧, 等).Spectroscopy and Spectral Analysis(光谱学与光谱分析), 2008, 28(10): 2325. [13] Slough W J, Rafert J B, Rohde C A, et al.SPIE, 1998, 3393: 207. [14] XIANGLI Bin, GAO Zhan, AN Bao-qing.SPIE, 1998, 3502: 30. [15] XIANGLI Bin, ZHAO Bao-chang, XUE Ming-qiu(相里斌, 赵葆常, 薛鸣球).863 Aerospace Technology Communication(863航天技术通讯), 1999, 13(10): 1. [16] XIANGLI Bin, ZHAO Bao-chang, XUE Ming-qiu(相里斌, 赵葆常, 薛鸣球).Acta Optica Sinica(光学学报), 1998, 18(1): 16. [17] ZHU Ri-hong, LI Jian-xin(朱日宏, 李建欣).Journal of Nanjing University of Science and Technology(南京理工大学学报), 2004, 28(4): 414. [18] ZHANG Wei, LI En-pu, CHEN Jian-ming(张 蔚, 李恩普, 陈建明).Electronics Optics & Control(电光与控制), 2004, 11(4): 57. [19] XIANGLI Bin, YUAN Yan(相里斌, 袁 艳).Acta Photonica Sinica(光子学报), 2006, 35(12): 1869.
|
[1] |
ZHANG Nan-nan1, 3, CHEN Xi-ya1,CHANG Xin-fang1, XING Jian1, GUO Jia-bo1, CUI Shuang-long1*, LIU Yi-tong2*, LIU Zhi-jun1. Distributed Design of Optical System for Multi-Spectral Temperature
Pyrometer[J]. SPECTROSCOPY AND SPECTRAL ANALYSIS, 2024, 44(01): 230-233. |
[2] |
XU Lu1, CHEN Yi-yun1, 2, 3*, HONG Yong-sheng1, WEI Yu1, GUO Long4, Marc Linderman5. Estimation of Soil Organic Carbon Content by Imaging Spectroscopy With Soil Roughness[J]. SPECTROSCOPY AND SPECTRAL ANALYSIS, 2022, 42(09): 2788-2794. |
[3] |
XIE Lu-yuan1, GUAN Tian1*, HE Yong-hong2*, HOU Jian-xun3, XU Tao4, CHEN Xue-jing2, WANG Bei2, SHEN Zhi-yuan2, XU Yang2. Raman Spectroscopy-Encoded Fluorescence Suspension Array Detection System[J]. SPECTROSCOPY AND SPECTRAL ANALYSIS, 2019, 39(10): 3021-3027. |
[4] |
WU Xin1,2, LI Guang-lin1*, WEN Zhi-yu3. Study and Determination of Nitriding Salt with Salt Bath Heat Treatment Technology[J]. SPECTROSCOPY AND SPECTRAL ANALYSIS, 2018, 38(11): 3347-3353. |
[5] |
ZHAO Wen-cheng, XU Xian-ze*, LIU Pan-pan, CHENG Wen-qiang, XU Feng-qiu . The Laser Rangefinder System in Quadrature Modem and Ambiguity Resolution[J]. SPECTROSCOPY AND SPECTRAL ANALYSIS, 2017, 37(02): 659-664. |
[6] |
CHEN Wei-kang1, FANG Hui2* . Particle Size and Number Density Online Analysis for Particle Suspension with Polarization-Differentiation Elastic Light Scattering Spectroscopy [J]. SPECTROSCOPY AND SPECTRAL ANALYSIS, 2016, 36(03): 770-774. |
[7] |
WANG Shuang1, 2, XIANGLI Bin3, LI Li-bo1, 2, PI Hai-feng1, 2 . Research of Spectrum Signal-to-Noise Ratio of Large Aperture Static Imaging Spectrometer[J]. SPECTROSCOPY AND SPECTRAL ANALYSIS, 2014, 34(03): 851-856. |
[8] |
XIANGLI Bin1, Lü Qun-bo1*, YUAN Yan2, HUANG Min1, ZHOU Jin-song1, ZHANG Gui-feng1 . Modeling and Correction of the Effect of Detector Lateral Fringe Error in the Large Aperture Static Imaging Spectrometer [J]. SPECTROSCOPY AND SPECTRAL ANALYSIS, 2012, 32(04): 1137-1141. |
[9] |
FU Qiang1,2, XIANGLI Bin3, Lü Qun-bo3, JING Juan-juan1,2 . Design of a Dual-Channel Mach-Zehnder Lateral Shearing Interferometer for the Large Aperture Static Imaging Spectrometer [J]. SPECTROSCOPY AND SPECTRAL ANALYSIS, 2012, 32(02): 553-557. |
[10] |
ZHANG Xue-wen1, 2, ZHANG Li-fu1*, HUANG Chang-ping1,2, ZHENG Lan-fen1, TONG Qing-xi1 . Fresh and Frozen-Thawed Meat Discrimination Based on FISS Imaging Spectral Data [J]. SPECTROSCOPY AND SPECTRAL ANALYSIS, 2011, 31(08): 2187-2190. |
[11] |
ZHANG Ying, ZHAO Hui-jie, CHENG Xuan, XIONG Sheng-jun . Design of Full-Polarized and Multi-Spectral Imaging System Based on LCVR [J]. SPECTROSCOPY AND SPECTRAL ANALYSIS, 2011, 31(05): 1375-1378. |
[12] |
HUANG Chang-ping1, 2, ZHANG Li-fu1, ZHANG Xiao-hong1, ZHENG Lan-fen1, TONG Qing-xi1 . Study on Discrimination of Varieties of Milk Based on FISS Imaging Spectral Data [J]. SPECTROSCOPY AND SPECTRAL ANALYSIS, 2011, 31(01): 214-218. |
[13] |
JIA Hui,YAO Yong. Characteristics of Typical Optical Systems with Diffractive Gratings of Micro-Spectrometers and Improvement of Spectrometer’s Resolution [J]. SPECTROSCOPY AND SPECTRAL ANALYSIS, 2007, 27(08): 1653-1656. |
|
|
|
|