Review of Remote Sensing Fundaments IV Infrared at High Spectral Resolution – Basic Principal &...

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Review of Remote Sensing Fundaments IV Infrared at High Spectral Resolution – Basic Principal & Limitations Allen Huang Cooperative Institute for Meteorological Satellite Studies Space Science & Engineering Center University of Wisconsin-Madison, USA GEOSS Americas/Caribbean Remote Sensing Workshop – Transforming Data into Products 26-30 November 2007 CPTEC/INPE Cachoeira Paulista - São Paulo Materials provided by Elisabeth Weisz, Paul Menzel, Paolo Antonalli, Jun Li, Mat Gunshor and Tim Schmit

Transcript of Review of Remote Sensing Fundaments IV Infrared at High Spectral Resolution – Basic Principal &...

Page 1: Review of Remote Sensing Fundaments IV Infrared at High Spectral Resolution – Basic Principal & Limitations Allen Huang Cooperative Institute for Meteorological.

Review of Remote Sensing Fundaments IVInfrared at High Spectral Resolution – Basic Principal & Limitations

Allen HuangCooperative Institute for Meteorological Satellite Studies

Space Science & Engineering CenterUniversity of Wisconsin-Madison, USA

GEOSS Americas/Caribbean Remote Sensing Workshop– Transforming Data into Products

26-30 November 2007 CPTEC/INPE Cachoeira Paulista - São Paulo

Materials provided by Elisabeth Weisz, Paul Menzel, Paolo Antonalli,

Jun Li, Mat Gunshor and Tim Schmit

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The road to improved IR sounding using

hyperspectral measurements

VAS (geo experimental)

GOES Sounder (geo operational)

GIFTS (geo experimental)

(12)

(18)

(~1600)

(~1600)

??? (geo operational)

time

(# of spectral bands)VTPR, HIRS (leo operational)

CrIS (leo operational)

IASI (leo operational)

AIRS (leo pseudo-operational)

HIS (airborne experimental)

IRIS (leo experimental)

(~2400)

(~8600)

IMG (leo experimental)

NAST-I (airborne experimental)(~8000)

(~6000)

(~4000)

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AIRS 2378

IASI 8461

CrIS 1400

HIRS 19

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AIRS IR SpecificationAIRS IR Specification

Infrared Spectral Coverage:3.74 m - 4.61 m [2674 – 2170 cm-1]6.20 m – 8.22 m [1613 – 1217 cm-1]8.80 m – 15.4 m [1136 – 649 cm-1]

Spectral Resolution: /=1200

Spatial Coverage:49.5 around nadir1.1 (~13.5 km dia) IFOV (Instantaneous Field of

View)

Sensitivity (NEDT): 0.14 K at 4.2 m 0.20 K from 3.7 to 13.6 m0.35 K from 13.6 to 15.4 m

Power / Mass: 256 W / 166 kg

Lifetime: 5 years

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AIRS Spatial Coverage (1)AIRS Spatial Coverage (1)

Swath: 1650 km

IFOV: 1.1° 13.5 km

http://www-airs.jpl.nasa.gov/

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AIRS Spatial Coverage (3)AIRS Spatial Coverage (3)

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AIRS Spectral CoverageAIRS Spectral Coverage

• IR sounder: 2378 channels• spectral ranges: 3.7 - 4.61 m, 6.2 - 8.22 m , 8.8 - 15.4 m;

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AIRS (Atmospheric Infrared Sounder)

& MODIS

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IASI Scan Characteristics

EVOF consists of 2x2 matrix of IFOV

30 EFOV per scan line

IFOV size at nadir: 12 km

IFOV at edge across/along track: 39/20 km

Swath: 48.333 deg

Swath width: 1100 km

Mean Altitude approx 817 km

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IASI Spectral Characteristics

Band Wavenumbers cm-1 Wavelength (m)

1 645.0 - 1210.0 8.26 - 15.5

2 1210.0 - 2000.0 5.0 - 8.26

3 2000.0 - 2760.0 3.62 - 5.0

Band 1 Band 2 Band 3

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Various Infrared spectral resolutions

Standard Atmosphere: 0.2 cm-1 (IASI & NAST-I-like) 0.6 cm-1 (AIRS & CrIS-like) 1.2 cm-1 (CrIS-like) 4.8 cm-1

19.2 cm-1 (current sounder-like)38.4 cm-1 (imager-like)

Jun Li, Mat Gunshor and Tim Schmit

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Longwave window region

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Longwave window region

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Longwave window region

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Longwave window region

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Longwave window region

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Longwave window region

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Longwave window region

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Water vapor region

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Water vapor region

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Water vapor region

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Water vapor region

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Water vapor region

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Water vapor region

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Water vapor region

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Moisture Weighting Functions

Pre

ssur

e (h

Pa)

Pre

ssur

e (h

Pa)

Advanced Sounder (3074)

GOES (18)

1000 1000

100 100

UW/CIMSS

High spectral resolution advanced sounder will have more and sharper weighting functions compared to current GOES

sounder. Retrievals will have better vertical resolution.

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Ultraspectral Infrared Measurement Characteristics - continue

Much Enhanced Measurement Information Contents

Current - GOES GIFTS~3 Pieces 10-12 Pieces

GOES Vert-Res.:3-5 Km

GIFTS Vert-Res.:

1-2 Km

TemperatureSounding

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Much Enhanced Measurement Information Contents

Current - GOES~2 Pieces 8-9 Pieces

AIRS/IASI/GIFTS

GOES Vert-Res.:6-8 Km

GIFTS Vert-Res.:

2-4 Km

Water VaporSounding

Hyperspectral Infrared Measurement CharacteristicsHyperspectral Infrared Measurement Characteristics

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Water VaporSounding

Measurement Vertical Resolution Information ContentMeasurement Vertical Resolution Information Content

Hyperspectral Infrared Measurement CharacteristicsHyperspectral Infrared Measurement Characteristics

HyperspectralFilter Radiometer

Radiosonde

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Various Infrared Spectral Absorption Features

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Infrared Spectral Sounding Profile Sensitivities

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HeIght

Absorption

Wavenumber Energy Contribution

Weighting Functions

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Broad Band

window

CO2 O3 H2O

window

Samplig of vibrational bandsIntegration over rotational bands

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… in Brightness Temperature

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High Spectral Resolution

Samplig over rotational bands

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Broad Band vs High Spectral

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Temperature Inversions

AIRS (20 July 2002)calculation Sub-Arctic Winter

May 2001 S. Pole radiosondeprofile used in calculation (0.365 mm H2O)

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Summary (1/2)Hyperspectral Sounder provides much improved atmospheric information content: Water Vapor (Temp.)

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Summary (2/2)Hyperspectral Sounder provides information to detect:

Trace Gases (i.e. O3; CO; CH4; SO2; N2O…)Cloud property (phase, size, optical thickness, concentration ……)Surface Property/typeHighly accurate radiances for climate study Validate IR broad band satellite measurments