Landsat swath imaging spectrometer design

被引:29
作者
Mouroulis, Pantazis [1 ]
Green, Robert O. [1 ]
Van Gorp, Byron [1 ]
Moore, Lori B. [1 ]
Wilson, Daniel W. [1 ]
Bender, Holly A. [1 ]
机构
[1] CALTECH, Jet Prop Lab, 4800 Oak Grove Dr, Pasadena, CA 91109 USA
基金
美国国家航空航天局;
关键词
imaging spectrometer; Landsat; visible to short-wave infrared; Dyson spectrometer;
D O I
10.1117/1.OE.55.1.015104
中图分类号
O43 [光学];
学科分类号
070207 ; 0803 ;
摘要
This paper describes the design of a high-throughput and high-uniformity pushbroom imaging spectrometer and telescope system that is capable of Landsat swath and resolution while providing better than 10 nm per pixel spectral resolution over the full visible to short-wave infrared band. The design is based on a 3200 x 480 element x 18 mu mpixel size focal plane array, two of which are utilized to cover the full swath. At an optical speed of F/1.8, the system is the fastest proposed to date to our knowledge. The utilization of only two Dyson-type spectrometer modules fed from the same telescope reduces system complexity while providing a solution within achievable detector technology. Two telescope designs are shown to achieve the required swath and resolution from different altitudes. Predictions of complete system response are shown. Also, it is shown that detailed ghost analysis is a requirement for this type of spectrometer and forms an essential part of a complete design. (C) 2016 Society of Photo-Optical Instrumentation Engineers (SPIE)
引用
收藏
页数:11
相关论文
共 25 条
[1]   Snow and Water Imaging Spectrometer (SWIS): optomechanical and system design for a CubeSat-compatible instrument [J].
Bender, Holly A. ;
Mouroulis, Pantazis ;
Smith, Christopher D. ;
Smith, Colin H. ;
Van Gorp, Byron E. ;
Eastwood, Michael L. ;
Gross, Johannes .
IMAGING SPECTROMETRY XX, 2015, 9611
[2]   Wide-field imaging spectrometer for the Hyperspectral Infrared Imager (HyspIRI) mission [J].
Bender, Holly A. ;
Mouroulis, Pantazis ;
Korniski, Ronald J. ;
Green, Robert O. ;
Wilson, Daniel W. .
IMAGING SPECTROMETRY XIX, 2014, 9222
[3]   Alignment and characterization of high uniformity imaging spectrometers [J].
Bender, Holly A. ;
Mouroulis, Pantazis ;
Eastwood, Michael L. ;
Green, Robert O. ;
Geier, Sven ;
Hochberg, Eric B. .
IMAGING SPECTROMETRY XVI, 2011, 8158
[4]   Design concept for a landsat-class Imaging spectrometer with well corrected spectral fidelity [J].
Chrien, TG ;
Cook, LG .
OPTICAL SPECTROSCOPIC TECHNIQUES AND INSTRUMENTATION FOR ATMOSPHERIC AND SPACE RESEARCH V, 2003, 5157 :90-97
[5]   Imaging spectroscopy and the Airborne Visible Infrared Imaging Spectrometer (AVIRIS) [J].
Green, RO ;
Eastwood, ML ;
Sarture, CM ;
Chrien, TG ;
Aronsson, M ;
Chippendale, BJ ;
Faust, JA ;
Pavri, BE ;
Chovit, CJ ;
Solis, MS ;
Olah, MR ;
Williams, O .
REMOTE SENSING OF ENVIRONMENT, 1998, 65 (03) :227-248
[6]   Spectral calibration requirement for earth-looking imaging spectrometers in the solar-reflected spectrum [J].
Green, RO .
APPLIED OPTICS, 1998, 37 (04) :683-690
[7]   The next Landsat satellite: The Landsat Data Continuity Mission [J].
Irons, James R. ;
Dwyer, John L. ;
Barsi, Julia A. .
REMOTE SENSING OF ENVIRONMENT, 2012, 122 :11-21
[8]  
Korsch D., 1991, Reflective Optics
[9]   The Schmidt-Dyson: a Fast Space-Borne Wide-Field Hyperspectral Imager [J].
Lucke, Robert ;
Fisher, John .
IMAGING SPECTROMETRY XV, 2010, 7812
[10]   CONCENTRIC SPECTROGRAPHS [J].
MERTZ, L .
APPLIED OPTICS, 1977, 16 (12) :3122-3124