Cubesat multispectral space-based imaging spectrometer enhancing climate change monitoring

被引:0
|
作者
Yerles, Mateo [1 ]
Schifano, Luca [1 ,2 ]
Dewitte, Steven [3 ]
Thienpont, Hugo [1 ,4 ]
Smeesters, Lien [1 ,4 ]
机构
[1] Vrije Univ Brussel, Dept Appl Phys & Photon, Brussels Photon B PHOT, Pl Laan 2, B-1050 Brussels, Belgium
[2] Royal Meteorol Inst Belgium, Ave Circulaire 3, B-1180 Brussels, Belgium
[3] Royal Observ Belgium, Ave Circulaire 3, B-1180 Brussels, Belgium
[4] Flanders Make, Pl Laan 2, B-1050 Brussels, Belgium
来源
OPTICAL DESIGN AND ENGINEERING IX | 2024年 / 13019卷
关键词
climate monitoring; space instrumentation; imaging spectrometer; wide field-of-view; reflective telescope; freeform optics; near-infrared spectrometer; thermal spectrometer;
D O I
10.1117/12.3017992
中图分类号
TP31 [计算机软件];
学科分类号
081202 ; 0835 ;
摘要
Space-based spectrometers are of high importance for Earth observation and greenhouse gas sensing. We present a novel freeform pushbroom imaging spectrometer, covering the visible (400 - 1100 nm), near-infrared (1100 - 1700 nm) and thermal (8 - 14 mu m) wavelength range, showing a full field-of-view of 120 degrees, while fitting within a single CubeSat Unit. The design is composed of a freeform 2-mirror telescope, followed by a freeform spectrometer unit. The freeform telescope guides the light to the spectrometer entrance slit, after which a collimating mirror is present, and the light is split to the 3 spectrometer channels. Each spectrometer channel focuses the light onto a 2D detector providing both spatial and spectral information. The visible spectrometer channel comprises a transmission diffraction grating followed by 2 freeform mirrors, enabling a nadir spatial resolution of 9.87 km and a spectral resolution of 5.18 nm. The near-infrared and thermal spectrometer each comprise a reflective diffraction grating and 2 freeform mirrors, featuring a nadir spatial resolution of 4.13 km and 9.31 km, and a spectral resolution of 2.74 nm and 48.27 nm, respectively. All mirrors are described using XY polynomials, up to the 4th order, enabling a close to diffraction-limited performance. Consequently, this design might benefit future space missions enabling an improved Earth observation and climate monitoring.
引用
收藏
页数:6
相关论文
共 50 条
  • [21] Mission Planning for Space-based Disaster Monitoring
    Lian Zhenyu
    Tan Yuejin
    Xu Yifan
    DISASTER ADVANCES, 2012, 5 (04): : 1346 - 1350
  • [22] Optical design of space-based wide field-of-view differential optical absorption imaging spectrometer
    Changchun Institute of Optics, Fine Mechanics and Physics, Chinese Academy of Sciences, Changchun
    Jilin
    130033, China
    Guangxue Xuebao, 1
  • [23] MOSAIC array design for space-based distributed multispectral wildfire sensor
    Hong, CS
    Hornsey, R
    Thomas, PJ
    INFRARED SPACEBORNE REMOTE SENSING VII, 1999, 3759 : 357 - 368
  • [24] Space-based mineral and gas identification using a high-performance thermal infrared imaging spectrometer
    Hall, Jeffrey L.
    Hackwell, John A.
    Tratt, David M.
    Warren, David W.
    Young, Stephen J.
    INFRARED SPACEBORNE REMOTE SENSING AND INSTRUMENTATION XVI, 2008, 7082
  • [25] Smart Camera System On-board a CubeSat for Space-based Object Reentry and Tracking
    Nallapu, Ravi Teja
    Ravindran, Aaditya
    Kalita, Himangshu
    Reddy, Vishnu
    Furfaro, Roberto
    Asphaug, Erik
    Thangavelautham, Jekan
    2018 IEEE/ION POSITION, LOCATION AND NAVIGATION SYMPOSIUM (PLANS), 2018, : 1294 - 1301
  • [26] Design of a space-based infrared imaging interferometer
    Hart, Michael
    Hope, Douglas
    Romeo, Robert
    OPTICAL ENGINEERING, 2017, 56 (07)
  • [27] Active optical zoom for space-based imaging
    Wick, David V.
    Bagwell, Brett E.
    Sweatt, William C.
    Peterson, Gary L.
    Martinez, Ty
    Restaino, Sergio R.
    Andrews, Jonathan R.
    Wilcox, Christopher C.
    Payne, Don M.
    Romeo, Robert
    UNCONVENTIONAL IMAGING II, 2006, 6307
  • [28] Innovative use of space-based technologies to address climate change and related global health crises
    Asrar, Farhan M.
    Chapman, Helena J.
    JOURNAL OF CLIMATE CHANGE AND HEALTH, 2025, 21
  • [29] Analysis of SNR for space-based imaging detection of space object
    Sun, Chengming
    Yuan, Yan
    Zhao, Fei
    Hongwai yu Jiguang Gongcheng/Infrared and Laser Engineering, 2015, 44 (05): : 1654 - 1659
  • [30] Space debris observation via space-based ISAR imaging
    Xinghui Cao
    Fulin Su
    Huadong Sun
    Guodong Xu
    2007 5TH INTERNATIONAL CONFERENCE ON MICROWAVE AND MILLIMETER WAVE TECHNOLOGY PROCEEDINGS, 2007, : 872 - +