Resurs-P. Capabilities. Standard products. A. Peshkun The 14 th International Scientific and...

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Resurs-P. Capabilities. Standard products. A. Peshkun The 14 th International Scientific and Technical Conference “From imagery to map: digital photogrammetric technologies” 20-22 th of October, 2014 China

Transcript of Resurs-P. Capabilities. Standard products. A. Peshkun The 14 th International Scientific and...

Page 1: Resurs-P. Capabilities. Standard products. A. Peshkun The 14 th International Scientific and Technical Conference “From imagery to map: digital photogrammetric.

Resurs-P. Capabilities. Standard products.

A. Peshkun

The 14th International Scientific and Technical Conference

“From imagery to map: digital photogrammetric technologies”

20-22th of October, 2014China

Page 2: Resurs-P. Capabilities. Standard products. A. Peshkun The 14 th International Scientific and Technical Conference “From imagery to map: digital photogrammetric.

Resurs-P — Russian remote sensing spacecraft developed by JSC “RSC Progress”. Operates by Research Center for Earth Operative Monitoring (JSC Russian Space Systems). Currently planned to create group of 3 satellites Resurs-P.The first spacecraft was launched on June 25, 2013.

The spacecraft is designed to update the maps to ensure economic activity MNR of Russia, the Russian Emergencies Ministry, for the control and protection of the environment and other consumers.

Page 3: Resurs-P. Capabilities. Standard products. A. Peshkun The 14 th International Scientific and Technical Conference “From imagery to map: digital photogrammetric.

Orbit parameters

Type circular sun-synchronous

Height, km 475

Inclination, deg 97.28

Revisit time, days 3

Orbital period, min 94

Page 4: Resurs-P. Capabilities. Standard products. A. Peshkun The 14 th International Scientific and Technical Conference “From imagery to map: digital photogrammetric.

Sensors

Page 5: Resurs-P. Capabilities. Standard products. A. Peshkun The 14 th International Scientific and Technical Conference “From imagery to map: digital photogrammetric.

Geoton-L1

Focal length, mm 4000

Diameter of the entrance pupil, mm 500

Aperture 1:8

Field of view, deg 5°18’

Pixel size, µmpanchromatic

spectral

6х6

18х18

GSD:panchromatic, mmultispectral, m

1.0

3.0-4.0

Span width, km 38

Spectral bands, µm:panchromatic

bluegreen

redred edge

NIR

0.62-0.790.48-0.530.54-0.590.62-0.680.72-0.800.81-0.88

Number of simultaneously used bands 1-5

bit per pix 10

Page 6: Resurs-P. Capabilities. Standard products. A. Peshkun The 14 th International Scientific and Technical Conference “From imagery to map: digital photogrammetric.
Page 7: Resurs-P. Capabilities. Standard products. A. Peshkun The 14 th International Scientific and Technical Conference “From imagery to map: digital photogrammetric.

Hyperspectral sensor

Span width, km 30GSD, m 25-30

Spectral bands, µm 0.4-1.1Number of bands more than 96

Spectral resolution, nm 5-10

Page 8: Resurs-P. Capabilities. Standard products. A. Peshkun The 14 th International Scientific and Technical Conference “From imagery to map: digital photogrammetric.

Complex wide field multispectral sensors

characteristicsValues

Medium resolution High resolution

Optic system:Focal length, mm

ApertureField of view, deg

401:4

54°30’

2001:3

11°70’

Span width, km 441.7 97.2

GSD:panchromatic, m

spectral, m

59

118

12

23.8

Spectral bands, µm:panchromatic

bluegreen

redNIR 1NIR 2

0.43-0.7

0.43-0.510.51-0.580.60-0.70

0.7-0.90.8-0.9

Pixel size, µmpanchromaticmultispectral

5х5

10х10

bit per pix 12

Page 9: Resurs-P. Capabilities. Standard products. A. Peshkun The 14 th International Scientific and Technical Conference “From imagery to map: digital photogrammetric.
Page 10: Resurs-P. Capabilities. Standard products. A. Peshkun The 14 th International Scientific and Technical Conference “From imagery to map: digital photogrammetric.

Surveying modes

Page 11: Resurs-P. Capabilities. Standard products. A. Peshkun The 14 th International Scientific and Technical Conference “From imagery to map: digital photogrammetric.

Route surveying can be performed with a constant roll and pitch, and with a given azimuth. Deviation of the spacecraft roll and pitch from the nadir possible up to ± 45 °, yaw - up to ± 60 °. Duration routes from 2 to 300 seconds.

Route surveying

s w a t h w i d t h

flight direction

flight direction

s w a t h w i d t h

Constant roll and pitch Constant azimuth

Page 12: Resurs-P. Capabilities. Standard products. A. Peshkun The 14 th International Scientific and Technical Conference “From imagery to map: digital photogrammetric.

Areal surveying

flight direction

s w a t h w i d t h

Page 13: Resurs-P. Capabilities. Standard products. A. Peshkun The 14 th International Scientific and Technical Conference “From imagery to map: digital photogrammetric.

Stereo surveying

s w a t h w i d t h

flight direction

Stereoimaging is performed at a single turn with a deviation by the pitch. Length of routes - up to 115 km.

Page 14: Resurs-P. Capabilities. Standard products. A. Peshkun The 14 th International Scientific and Technical Conference “From imagery to map: digital photogrammetric.

Standard products

Page 15: Resurs-P. Capabilities. Standard products. A. Peshkun The 14 th International Scientific and Technical Conference “From imagery to map: digital photogrammetric.

Sensor Geoton-L1Product

levelPanchromatic

GSD 1m, spectral band 0.62-0.79 µm

MultispectralGSD 3 m, spectral bands: 0.48-0.53 µm 0.54-0.59 µm 0.62-0.68 µm 0.72-0.80 µm

Reb bandsGSD 3 m, spectral bands: 0.66-0.69 µm 0.70-0.75 µm

NIRGSD 3 m,spectral band 0.81-0.88 µm

File format

1А images by bands with radiometric and geometric correction + RPC. TIFF, BМP, IMG

1А1 RGB image with radiometric and geometric correction + RPC

TIFF, BМP, IMG

2А images by bands with radiometric and geometric correction + RPC, georeferenced to a cartographic projection, transformed by the average height. accuracy 30-50 m.

GeoTIFF, IMG

2А1RGB image with radiometric and

geometric correction + RPC, georeferenced to a cartographic projection, transformed by the

average height. accuracy 30-50 m.

GeoTIFF, IMG

2Вimages by bands with radiometric and geometric correction, georeferenced to a cartographic projection, transformed by using GCP and DTM.

Accuracy dependent on the reference data and DTM. GeoTIFF, IMG

2В1 RGB image with radiometric and geometric correction,

georeferenced to a cartographic projection, transformed by using

GCP and DTM. Accuracy dependent on the reference data

and DTM.

GeoTIFF, IMG

3А Mosaic image of the images 2A level.

Mosaic image of the images 2A1 level.

GeoTIFF, IMG

3В Mosaic image of the images 2B level.

Mosaic image of the images 2B1 level.

GeoTIFF, IMG

4А Pansharpened image (PAN 2A level + MSS 2A1 level) GeoTIFF, IMG

4В Pansharpened image (PAN 2B level + MSS 2B1 level) GeoTIFF, IMG

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Hyperspectral sensor

Product level GSD 30 mSpectral range 0,4-1,1 nm (130 bands)

File format

1А Hyperspectral image with radiometric and geometric correction, with color value at entrance pupil. TIF, IMG, BMP,

2А Hyperspectral image with radiometric and geometric correction, with color value at entrance pupil, georeferenced to a cartographic projection, transformed by the average height. Accuracy 100 m.

GeoTIFF, IMG

2В Hyperspectral image with radiometric and geometric correction, with color value at entrance pupil, georeferenced to a cartographic projection, transformed by using GCP and DTM. Accuracy dependent on the reference data and DTM.

GeoTIFF, IMG

Page 17: Resurs-P. Capabilities. Standard products. A. Peshkun The 14 th International Scientific and Technical Conference “From imagery to map: digital photogrammetric.

wide field multispectral sensor (medium resolution)Product level Panchromatic

GSD 60 mSpectral band 0.43-0.70 µm

MultispectralGSD 120 m Spectral bands: 0.43-0.51 µm 0.51-0.58 µm 0.60-0.70 µm 0.70-0.90 µm 0.80-0.90 µm

File format

1А images by bands with radiometric and geometric correction. TIFF, BМP,IMG

1А1 RGB image with radiometric and geometric correction. TIFF, BМP, IMG

2А images by bands with radiometric and geometric correction, georeferenced to a cartographic projection, transformed by the average height. Accuracy 100 m for PAN and 200 m for MSS.

GeoTIFF, IMG

2А1 RGB image with radiometric and geometric correction, georeferenced to a cartographic projection, transformed by the

average height. accuracy 200 m.

GeoTIFF, IMG

2В images by bands with radiometric and geometric correction, georeferenced to a cartographic projection, transformed by using GCP and DTM. Accuracy dependent on the reference data and DTM.

GeoTIFF, IMG

2В1 RGB image with radiometric and geometric correction, georeferenced to a cartographic projection, transformed by using

GCP and DTM. Accuracy dependent on the reference data and DTM.

GeoTIFF, IMG

3А Mosaic image of the images 2A level. Mosaic image of the images 2A1 level. GeoTIFF, IMG

3В Mosaic image of the images 2B level. Mosaic image of the images 2B1 level. GeoTIFF, IMG

4А Pansharpened image (PAN 2A level + MSS 2A1 level) GeoTIFF, IMG

4В Pansharpened image (PAN 2B level + MSS 2B1 level) GeoTIFF, IMG

Page 18: Resurs-P. Capabilities. Standard products. A. Peshkun The 14 th International Scientific and Technical Conference “From imagery to map: digital photogrammetric.

wide field multispectral sensor (high resolution)Product level Panchromatic

GSD 12 mSpectral band 0.43-0.70 µm

MultispectralGSD 24 м Spectral bands: 0.43-0.51 µm 0.51-0.58 µm 0.60-0.70 µm 0.70-0.90 µm 0.80-0.90 µm

File format

1А images by bands with radiometric and geometric correction. TIFF, BМP,IMG

1А1 RGB image with radiometric and geometric correction. TIFF, BМP, IMG

2А images by bands with radiometric and geometric correction, georeferenced to a cartographic projection, transformed by the average height. Accuracy 50 m for PAN and 100 m for MSS.

GeoTIFF, IMG

2А1 RGB image with radiometric and geometric correction, georeferenced to a cartographic projection, transformed by the

average height. accuracy 100 m.

GeoTIFF, IMG

2В images by bands with radiometric and geometric correction, georeferenced to a cartographic projection, transformed by using GCP and DTM. Accuracy dependent on the reference data and DTM.

GeoTIFF, IMG

2В1 RGB image with radiometric and geometric correction, georeferenced to a cartographic projection, transformed by using

GCP and DTM. Accuracy dependent on the reference data and DTM.

GeoTIFF, IMG

3А Mosaic image of the images 2A level. Mosaic image of the images 2A1 level. GeoTIFF, IMG

3В Mosaic image of the images 2B level. Mosaic image of the images 2B1 level. GeoTIFF, IMG

4А Pansharpened image (PAN 2A level + MSS 2A1 level) GeoTIFF, IMG

4В Pansharpened image (PAN 2B level + MSS 2B1 level) GeoTIFF, IMG

Page 19: Resurs-P. Capabilities. Standard products. A. Peshkun The 14 th International Scientific and Technical Conference “From imagery to map: digital photogrammetric.

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