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Item Identification
Keywords
Physical Location
Data Set Info
Support Roles
Extents
Spatial Info
Access Info
Distribution Info
URLs
Activity Log
Tech Environment
Data Quality
Lineage
Child Items
Catalog Details

Summary

Short Citation
National Centers for Coastal Ocean Science, 2024: IKONOS Imagery for the Republic of Palau, https://www.fisheries.noaa.gov/inport/item/39062.
Full Citation Examples

Abstract

The National Oceanic and Atmospheric Administration's (NOAA) National Ocean Service (NOS) is tasked with the coral mapping element of the U.S. Coral Reef Task Force (CRTF) under the authority of Executive Order 13089. NOS is responsible for coral reef mapping in Puerto Rico, the U.S. Virgin Islands, the Northwest Hawaiian Islands, the Main Eight Hawaiian Islands, and the U.S. Territories and Freely Associated States of the Pacific. Space Imaging, Inc (SI) and Analytical Laboratories of Hawaii, LLC (ALH) has produced GIS-compatible benthic habitat digital maps of the Republic of Palau using the classification scheme defined by NOAA. The map products produced through this project include baseline data of U.S. coral reefs, location of coral reef boundaries and overall coral reef cover, and the geomorphologic structure in and around coral reef systems. Maps include the 9 major and 23 detailed biological cover types, 4 major and 14 detailed geomorphological structure types, and 15 mutually exclusive zones specified in NOAA's hierarchical classification manual for coastal waters of the Republic of Palau. Benthic habitats are delineated from the coastline to water depths of 30 meters in GIS using manual interpretation techniques. NOAA utilizes IKONOS Multispectral (MSI) Satellite Imagery from Space Imaging, Inc., consisting of both newly acquired and archived imagery. The imagery consists of 1m panchromatic and 4m MSI with a horizontal accuracy of at least 5m CE95 at 1:4,800 National Map Accuracy Standard (NMAS). Once the imagery is processed, NOAA will use ALH's hand-digitize GIS approach to produce the benthic habitat maps at a minimum mapping unit of one acre, as well as NOAA's preferred random stratified accuracy assessment method.

Distribution Information

Access Constraints:

None

Use Constraints:

None

Controlled Theme Keywords

environment, imageryBaseMapsEarthCover, oceans

Child Items

Type Title
Entity Pansharpened Blue
Entity Pansharpened Green
Entity Pansharpened Red

Contact Information

Point of Contact
NCCOS Scientific Data Coordinator
NCCOS.data@noaa.gov

Metadata Contact
NCCOS Scientific Data Coordinator
NCCOS.data@noaa.gov

Extents

Geographic Area 1

134.091263° W, 134.752° E, 8.218° N, 6.8537° S

Time Frame 1
2003 - 2006

Item Identification

Title: IKONOS Imagery for the Republic of Palau
Short Name: Palau_Imagery_Metadata
Status: Completed
Publication Date: 2007-09
Abstract:

The National Oceanic and Atmospheric Administration's (NOAA) National Ocean Service (NOS) is tasked with the coral mapping element of the U.S. Coral Reef Task Force (CRTF) under the authority of Executive Order 13089. NOS is responsible for coral reef mapping in Puerto Rico, the U.S. Virgin Islands, the Northwest Hawaiian Islands, the Main Eight Hawaiian Islands, and the U.S. Territories and Freely Associated States of the Pacific. Space Imaging, Inc (SI) and Analytical Laboratories of Hawaii, LLC (ALH) has produced GIS-compatible benthic habitat digital maps of the Republic of Palau using the classification scheme defined by NOAA. The map products produced through this project include baseline data of U.S. coral reefs, location of coral reef boundaries and overall coral reef cover, and the geomorphologic structure in and around coral reef systems. Maps include the 9 major and 23 detailed biological cover types, 4 major and 14 detailed geomorphological structure types, and 15 mutually exclusive zones specified in NOAA's hierarchical classification manual for coastal waters of the Republic of Palau. Benthic habitats are delineated from the coastline to water depths of 30 meters in GIS using manual interpretation techniques. NOAA utilizes IKONOS Multispectral (MSI) Satellite Imagery from Space Imaging, Inc., consisting of both newly acquired and archived imagery. The imagery consists of 1m panchromatic and 4m MSI with a horizontal accuracy of at least 5m CE95 at 1:4,800 National Map Accuracy Standard (NMAS). Once the imagery is processed, NOAA will use ALH's hand-digitize GIS approach to produce the benthic habitat maps at a minimum mapping unit of one acre, as well as NOAA's preferred random stratified accuracy assessment method.

Purpose:

Atmospheric correction removes atmospheric effects from the raw pansharpened data and retrieves surface reflectance, characterizing the surface properties, in order to improve the accuracy of image classification. Calibration coefficients for the satellite, provided by Space Imaging, were used to calculate at-satellite radiance, which was then transformed to reflectance.

Notes:

618

Keywords

Theme Keywords

Thesaurus Keyword
ISO 19115 Topic Category
environment
ISO 19115 Topic Category
imageryBaseMapsEarthCover
ISO 19115 Topic Category
oceans
UNCONTROLLED
NOS Data Explorer Topic Category Remotely Sensed Imagery/Photos
None benthic
None habitat
None IKONOS Imagery
None oceans
None reef

Spatial Keywords

Thesaurus Keyword
UNCONTROLLED
None Belau
None Palau
None Republic of Palau
None United States

Physical Location

Organization: National Centers for Coastal Ocean Science
City: Silver Spring
State/Province: MD

Data Set Information

Data Set Scope Code: Data Set
Maintenance Frequency: Unknown
Data Presentation Form: raster digital data
Distribution Liability:

This data is provided by Space Imaging for the U.S. Department of Commerce, the National Oceanic and Atmospheric Administration (NOAA), the National Ocean Service (NOS), the National Centers for Coastal Ocean Science (NCCOS), and the Center for Coastal Monitoring and Assessment (CCMA). The Government retains the exclusive rights to use, publish, and duplicate the original and derived products and data during the course of this contract. While every effort has been made to ensure the accuracy of the information supplied herein, Space Imaging does not guarentee the accuracy of geographic features or attributes. Space Imaging cannot be held responsible for any errors or omissions and reserves the right to change the content of its data, including the products and services described therein, at any time; therefore, all Space Imaging and third party information is provided "AS IS". Space Imaging DISCLAIMS ALL WARRANTIES WITH REGARD TO THE INFORMATION (INLCUDING ANY SOFTWARE) PROVIDED, INCLUDING THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE, AND NON-INFRINGEMENT. Space Imaging shall not be liable for any damages whatsoever, including any special, indirect, navigational, consequential, or incidental damages, or damages for lost profits, loss of revenue, or loss of use, arising out of access to, inablility to access, use or inability to use any Space Imaging mapping products or the information contained within them, whether such damages arise in contract, negligence, tort, under statute, in equity, at law, or otherwise.

Support Roles

Data Steward

CC ID: 455911
Date Effective From: 2007-09
Date Effective To:
Contact (Position): NCCOS Scientific Data Coordinator
Email Address: NCCOS.data@noaa.gov

Distributor

CC ID: 455913
Date Effective From: 2007-09
Date Effective To:
Contact (Position): NCCOS Scientific Data Coordinator
Email Address: NCCOS.data@noaa.gov

Metadata Contact

CC ID: 455914
Date Effective From: 2007-09
Date Effective To:
Contact (Position): NCCOS Scientific Data Coordinator
Email Address: NCCOS.data@noaa.gov

Point of Contact

CC ID: 455912
Date Effective From: 2007-09
Date Effective To:
Contact (Position): NCCOS Scientific Data Coordinator
Email Address: NCCOS.data@noaa.gov

Principal Investigator

CC ID: 455915
Date Effective From: 2007-09
Date Effective To:
Contact (Person): Battista, Tim
Email Address: tim.battista@noaa.gov

Extents

Currentness Reference: Ground Condition

Extent Group 1

Extent Group 1 / Geographic Area 1

CC ID: 455918
W° Bound: 134.091263
E° Bound: 134.752
N° Bound: 8.218
S° Bound: 6.8537

Extent Group 1 / Time Frame 1

CC ID: 455917
Time Frame Type: Range
Start: 2003
End: 2006

Spatial Information

Spatial Representation

Representations Used

Grid: Yes

Grid Representation 1

CC ID: 585297
Dimension Count: 3
Cell Geometry: Point
Transformation Parameters Available?: No

Axis Dimension 1

Dimension Type: Row
Size: 37709

Axis Dimension 2

Dimension Type: Column
Size: 18194

Axis Dimension 3

Dimension Type: Vertical
Size: 1

Access Information

Security Class: Unclassified
Security Classification System:

None

Security Handling Description:

None

Data Access Constraints:

None

Data Use Constraints:

None

Metadata Access Constraints:

none

Metadata Use Constraints:

none

Distribution Information

Distribution 1

CC ID: 455919
Download URL: http://ccma.nos.noaa.gov/products/biogeography/palau/data
Distributor:
Description:

Downloadable Data

File Type (Deprecated): JPEG2000
Distribution Format: JPEG
Application Version: 1
Compression: Zip

URLs

URL 1

CC ID: 455908
URL: http://ccma.nos.noaa.gov/products/biogeography/palau/data/
URL Type:
Online Resource

URL 2

CC ID: 455909
URL: http://ccma.nos.noaa.gov/products/biogeography/palau/
URL Type:
Online Resource

Activity Log

Activity Log 1

CC ID: 455934
Activity Date/Time: 2013-07-25
Description:

Date that the source FGDC record was last modified.

Activity Log 2

CC ID: 455933
Activity Date/Time: 2017-04-05
Description:

Converted from FGDC Content Standards for Digital Geospatial Metadata (version FGDC-STD-001-1998) using 'fgdc_to_inport_xml.pl' script. Contact Tyler Christensen (NOS) for details.

Activity Log 3

CC ID: 585295
Activity Date/Time: 2017-09-13
Description:

Partial upload of Spatial Info section only.

Activity Log 4

CC ID: 716598
Activity Date/Time: 2018-02-08
Description:

Partial upload of Positional Accuracy fields only.

Technical Environment

Description:

Microsoft Windows XP Version 5.1 (Build 2600) Service Pack 2; ESRI ArcCatalog 9.2.2.1350

Data Quality

Horizontal Positional Accuracy:

The IKONOS Imagery consist of 1m panchromatic and 4m MSI with a horizontal accuracy of at least 5m CE95 at 1:4,800 National Map Accuracy Standard (NMAS)

Completeness Report:

Atmospherically corrected data in units of remote-sensing reflectance were delivered in Unsigned Integer 16-bit (BIP) PIX format with an associated header file that includes the lat/long information for every pixel projected in UTM WGS-84 (Zone 53N).

Conceptual Consistency:

All of the IKONOS imagery was purchased in National Imagery Transmission Format (NITF) with the associated Rational Polynomial Coefficients (RPCs or satellite ephemeris data). Raw satellite images were converted from Digital Numbers (DNs) to normalized reflectance. Normalized reflectance (or at-satellite reflectance) converts DNs into standardized, satellite-independent, comparable values. First developed for Landsat satellite imagery, the algorithm used to perform this conversion was modified for IKONOS image processing. As part of the conversion from DNs to at-satellite reflectance, the following equation is used (Green et al. 2000):R = pi * L/ (Eo cos(theta0) 1/r2)L = radiance (from calibration provided by Space Imaging). r = earth-sun distance in Astronomical Units. theta0 = the solar zenith angle Eo = the mean solar exo-atmospheric irradiance in each band. (A convolution of the spectral response and solar radiation from Neckel and Labs (1984) was used to get Eo.) The acquisition angles (ephemeris data) of the satellite relative to the ground at the time of image acquisition were also used. Calibration coefficients for the satellite, provided by Space Imaging, were used to calculate at-satellite radiance, which was then transformed to reflectance. The normalized reflectance imagery was then transformed into water reflectance (or the signal less than 10 cm above the water surface). Water reflectance uses the near-infrared band to remove radiance attributed to atmospheric and surface effects (Stumpf et al. 2003). Water reflectance estimates how the signal (photons) received by the satellite is diminished as it passes through the atmosphere on the way down to the water-atmosphere boundary and on the way back up to the satellite after the signal leaves the water-atmosphere boundary. Water reflectance also estimates how the signal at the satellite is diminished by water vapor, clouds, specular effects at the water surface (wave surface glint), and other signal- absorbing and diffusing materials.

Lineage

Process Steps

Process Step 1

CC ID: 455906
Description:

All of the IKONOS imagery was purchased in National Imagery Transmission Format (NITF) with the associated Rational Polynomial Coefficients (RPCs or satellite ephemeris data). Raw satellite images were converted from Digital Numbers (DNs) to normalized reflectance. As part of the conversion from DNs to at-satellite reflectance, the following equation is used (Green et al. 2000):R = pi * L/ (Eo cos(theta0) 1/r2)L = radiance (from calibration provided by Space Imaging). r = earth-sun distance in Astronomical Units. theta0 = the solar zenith angle. Eo = the mean solar exo-atmospheric irradiance in each band. (A convolution of the spectral response and solar radiation from Neckel and Labs (1984) was used to get Eo.) The acquisition angles (ephemeris data) of the satellite relative to the ground at the time of image acquisition were also used. Calibration coefficients for the satellite, provided by Space Imaging, were used to calculate at-satellite radiance, which was then transformed to reflectance. The normalized reflectance imagery was then transformed into water reflectance (or the signal less than 10 cm above the water surface). Water reflectance uses the near-infrared band to remove radiance attributed to atmospheric and surface effects (Stumpf et al. 2003). Water reflectance estimates how the signal (photons) received by the satellite is diminished as it passes through the atmosphere on the way down to the water-atmosphere boundary and on the way back up to the satellite after the signal leaves the water-atmosphere boundary. Water reflectance also estimates how the signal at the satellite is diminished by water vapor, clouds, specular effects at the water surface (wave surface glint), and other signal- absorbing and diffusing materials.Georeferencing/mosaicking of the imagery was performed using PCI OrthoEngine module. The NITF IKONOS imagery was orthorectified using the Rational Functions extracted from the NITF, then further supplemented with ground control collected via survey grade GPS and corrected for terrain displacement using the DEM's where available. When multiple scenes were available for a given area, these were collectively incorporated into the orthomosaic project through bundle adjustment. Each scene was exported as a separate orthorectified file for further image processing. In addition, the best segments of each scene were selected for creation of the final mosaic. Segments of each scene were selected to minimize sun glint, cloud interference, turbidity, etc. in the final mosaic. Where possible, parts of images obscured by sun glint or clouds were replaced with cloud/glint free parts of overlapping images. As a result, most mosaics have few or no clouds or sun glint obscuring bottom features. However, in some cases, clouds, sun glint, or turbid areas could not be replaced with overlapping imagery. In these areas, such obstructions were minimized but could not be eliminated completely.

Process Date/Time: 2007-01-01 00:00:00

Child Items

Rubric scores updated every 15m

Rubric Score Type Title
Entity Pansharpened Blue
Entity Pansharpened Green
Entity Pansharpened Red

Catalog Details

Catalog Item ID: 39062
GUID: gov.noaa.nmfs.inport:39062
Metadata Record Created By: Tyler Christensen
Metadata Record Created: 2017-04-05 12:50+0000
Metadata Record Last Modified By: SysAdmin InPortAdmin
Metadata Record Last Modified: 2023-10-17 16:12+0000
Metadata Record Published: 2018-02-08
Owner Org: NCCOS
Metadata Publication Status: Published Externally
Do Not Publish?: N
Metadata Last Review Date: 2018-02-08
Metadata Review Frequency: 1 Year
Metadata Next Review Date: 2019-02-08