{"data":{"productCodeLong":"NEON.DOM.SITE.DP1.30010.001","productCode":"DP1.30010.001","productCodePresentation":"NEON.DP1.30010","productName":"High-resolution orthorectified camera imagery","productDescription":"White balanced 8 bit RGB images orthorectified and output onto a fixed, uniform spatial grid using nearest neighbor resampling to a 10 cm spatial resolution.","productStatus":"ACTIVE","productCategory":"Level 1 Data Product","productHasExpanded":false,"productScienceTeamAbbr":"AOP","productScienceTeam":"Airborne Observation Platform (AOP)","productPublicationFormatType":"AOP Data Product Type","productAbstract":"The digital camera is part of a suite of instruments on the NEON Airborne Observation Platform (AOP) that also includes a full-waveform, small-footprint LiDAR system and the NEON Imaging Spectrometer. In the orthorectification process, the digital imagery is remapped to the same geographic projection as the LiDAR and imaging spectrometer data that is acquired simultaneously. The resulting images will share the same map projection grid space as the orthorectified spectrometer and LiDAR imagery. Since the digital camera imagery is acquired at higher spatial resolution than the imaging spectrometer data, it can aid in identifying features in the spectrometer images including manmade features (e.g., roads, fence lines, and buildings) that are indicative of land-use change. Level 1 RGB camera images are distributed as one camera frame per GeoTIFF file.\n\nLatency:\nAOP data will be available 60 days after the final collection day at a site.","productDesignDescription":"The Level 1 high-resolution RGB orthorectified camera imagery product is a single color camera frame in GeoTIFF raster data format in UTM projection and ITRF00 datum.","productStudyDescription":"NEON AOP data are planned for yearly collects at all NEON sites at 90% of maximum greenness or greater. Coverage is planned to include at least 95% of NIS Tower Airshed area as well as at least 80% of a minimum 10km x 10 km box around that. All acquisitions are subject to change due to weather conditions as well as program planning changes.","productBasicDescription":"Includes the data product as a single orthorectified RGB camera image in GeoTIFF format. An expanded package is not available for this product.","productExpandedDescription":"","productSensor":"NEON Airborne Observation Platform (AOP) High Resolution Digital Camera – Optech Gemini","productRemarks":"","themes":["Land Use, Land Cover, and Land Processes"],"changeLogs":[{"id":44912,"parentIssueID":null,"issueDate":"2022-01-14T00:00:00Z","resolvedDate":"2022-01-14T00:00:00Z","dateRangeStart":"2018-07-01T00:00:00Z","dateRangeEnd":"2018-07-31T00:00:00Z","locationAffected":"WREF","issue":"Elevations referenced in ellipsoidal heights caused errors in camera geolocation ray-tracing.","resolution":"Elevations were updated to orthometric heights via Geoid12A and geolocation was re-calculated."},{"id":45906,"parentIssueID":null,"issueDate":"2022-01-20T00:00:00Z","resolvedDate":"2022-03-31T00:00:00Z","dateRangeStart":"2020-01-01T00:00:00Z","dateRangeEnd":"2020-01-31T00:00:00Z","locationAffected":"PUUM","issue":"Gap filling was not applied to camera images leaving large portions with NO DATA values.","resolution":"Update data to use a gap filling technique to improve data coverage."},{"id":46004,"parentIssueID":null,"issueDate":"2022-01-20T00:00:00Z","resolvedDate":"2022-12-09T00:00:00Z","dateRangeStart":"2016-07-01T00:00:00Z","dateRangeEnd":"2017-08-31T00:00:00Z","locationAffected":"STEI (CHEQ)","issue":"Files referenced in incorrect UTM zone (16N) for the Chequamegon-Nicolet National Forest region of STEI.","resolution":"Files were reprocessed and referenced within the correct UTM zone (15N)."},{"id":74911,"parentIssueID":null,"issueDate":"2022-12-08T00:00:00Z","resolvedDate":"2022-12-08T00:00:00Z","dateRangeStart":"2021-05-01T00:00:00Z","dateRangeEnd":"2022-06-30T00:00:00Z","locationAffected":"SOAP, TEAK, DSNY, OSBS, JERC, OAES, SCBI","issue":"Inaccurate geolocation of camera pixels due to noise identified in lidar derived DSMs. This issue generally affects <1% of pixels within the site and introduces pixel geolocation errors on the order of meters.","resolution":"An improved algorithm for reducing and properly classifying noise in lidar point clouds was applied, and downstream products were re-processed."},{"id":91504,"parentIssueID":null,"issueDate":"2024-08-03T00:00:00Z","resolvedDate":"2025-12-12T00:00:00Z","dateRangeStart":"2018-04-23T00:00:00Z","dateRangeEnd":"2018-04-25T00:00:00Z","locationAffected":"CLBJ","issue":"Inaccurate geolocation of camera pixels due to mis-classified noise in lidar point clouds which also affected the lidar-derived DSMs, used in the camera orthorectification. This issue generally affects a small percentage of pixels within the site and introduces pixel geolocation errors on the order of meters.","resolution":"Regions with dense and high levels of atmospheric noise were manually removed and downstream products were re-generated. 2018 CLBJ, 2019 and 2021 MOAB and 2022 TOOL were fixed for RELEASE-2025. 2019 REDB are updated in RELEASE-2026."},{"id":91505,"parentIssueID":91504,"issueDate":"2024-08-03T00:00:00Z","resolvedDate":"2025-12-12T00:00:00Z","dateRangeStart":"2019-01-01T00:00:00Z","dateRangeEnd":"2019-08-31T00:00:00Z","locationAffected":"MOAB, REDB","issue":"Inaccurate geolocation of camera pixels due to mis-classified noise in lidar point clouds which also affected the lidar-derived DSMs, used in the camera orthorectification. This issue generally affects a small percentage of pixels within the site and introduces pixel geolocation errors on the order of meters.","resolution":"Regions with dense and high levels of atmospheric noise were manually removed and downstream products were re-generated. 2018 CLBJ, 2019 and 2021 MOAB and 2022 TOOL were fixed for RELEASE-2025. 2019 REDB are updated in RELEASE-2026."},{"id":91506,"parentIssueID":91504,"issueDate":"2024-08-03T00:00:00Z","resolvedDate":"2025-12-12T00:00:00Z","dateRangeStart":"2021-04-28T00:00:00Z","dateRangeEnd":"2021-04-30T00:00:00Z","locationAffected":"MOAB","issue":"Inaccurate geolocation of camera pixels due to mis-classified noise in lidar point clouds which also affected the lidar-derived DSMs, used in the camera orthorectification. This issue generally affects a small percentage of pixels within the site and introduces pixel geolocation errors on the order of meters.","resolution":"Regions with dense and high levels of atmospheric noise were manually removed and downstream products were re-generated. 2018 CLBJ, 2019 and 2021 MOAB and 2022 TOOL were fixed for RELEASE-2025. 2019 REDB are updated in RELEASE-2026."},{"id":91507,"parentIssueID":91504,"issueDate":"2024-08-03T00:00:00Z","resolvedDate":"2025-12-12T00:00:00Z","dateRangeStart":"2022-08-02T00:00:00Z","dateRangeEnd":"2022-08-12T00:00:00Z","locationAffected":"TOOL","issue":"Inaccurate geolocation of camera pixels due to mis-classified noise in lidar point clouds which also affected the lidar-derived DSMs, used in the camera orthorectification. This issue generally affects a small percentage of pixels within the site and introduces pixel geolocation errors on the order of meters.","resolution":"Regions with dense and high levels of atmospheric noise were manually removed and downstream products were re-generated. 2018 CLBJ, 2019 and 2021 MOAB and 2022 TOOL were fixed for RELEASE-2025. 2019 REDB are updated in RELEASE-2026."},{"id":97904,"parentIssueID":null,"issueDate":"2024-11-15T00:00:00Z","resolvedDate":"2025-01-29T00:00:00Z","dateRangeStart":"2014-05-18T00:00:00Z","dateRangeEnd":"2014-06-02T00:00:00Z","locationAffected":"DSNY, HARV, JERC","issue":"Inaccurate geolocation of camera pixels due to mis-aligned flightlines in lidar point clouds which also affected the lidar-derived DSMs, used in the camera orthorectification. This issue may introduce pixel geolocation errors on the order of centimeters to meters for small portions of the site.","resolution":"2014 DSNY & HARV, 2018 ABBY: Lidar lines were properly aligned using BayesMap StripAlign software, lidar DSM was re-processed, and camera re-processed to improve orthorectification, available in RELEASE-2025. For the remainder of the sites and dates, camera images will be reprocessed and made available as part of RELEASE-2026."},{"id":97905,"parentIssueID":97904,"issueDate":"2024-11-15T00:00:00Z","resolvedDate":"2025-01-29T00:00:00Z","dateRangeStart":"2018-06-24T00:00:00Z","dateRangeEnd":"2018-08-11T00:00:00Z","locationAffected":"ABBY, BONA","issue":"Inaccurate geolocation of camera pixels due to mis-aligned flightlines in lidar point clouds which also affected the lidar-derived DSMs, used in the camera orthorectification. This issue may introduce pixel geolocation errors on the order of centimeters to meters for small portions of the site.","resolution":"2014 DSNY & HARV, 2018 ABBY: Lidar lines were properly aligned using BayesMap StripAlign software, lidar DSM was re-processed, and camera re-processed to improve orthorectification, available in RELEASE-2025. For the remainder of the sites and dates, camera images will be reprocessed and made available as part of RELEASE-2026."},{"id":100804,"parentIssueID":null,"issueDate":"2025-03-25T00:00:00Z","resolvedDate":"2025-03-25T00:00:00Z","dateRangeStart":"2024-07-28T00:00:00Z","dateRangeEnd":"2024-08-07T00:00:00Z","locationAffected":"NIWO, RMNP","issue":"The twin otter aircraft had a fuel leak causing some photos to be blurred.","resolution":"Blurred photos cannot be recovered; data issue is reported in the Camera QA reports, provided in the metadata folder."},{"id":106007,"parentIssueID":97904,"issueDate":"2024-11-15T00:00:00Z","resolvedDate":"2025-01-29T00:00:00Z","dateRangeStart":"2016-09-12T00:00:00Z","dateRangeEnd":"2016-09-12T00:00:00Z","locationAffected":"STEI (CHEQ)","issue":"Inaccurate geolocation of camera pixels due to mis-aligned flightlines in lidar point clouds which also affected the lidar-derived DSMs, used in the camera orthorectification. This issue may introduce pixel geolocation errors on the order of centimeters to meters for small portions of the site.","resolution":"2014 DSNY & HARV, 2018 ABBY: Lidar lines were properly aligned using BayesMap StripAlign software, lidar DSM was re-processed, and camera re-processed to improve orthorectification, available in RELEASE-2025. For the remainder of the sites and dates, camera images will be reprocessed and made available as part of RELEASE-2026."},{"id":108209,"parentIssueID":97904,"issueDate":"2024-11-15T00:00:00Z","resolvedDate":"2025-01-29T00:00:00Z","dateRangeStart":"2017-06-02T00:00:00Z","dateRangeEnd":"2017-09-11T00:00:00Z","locationAffected":"MLBS, ORNL, STEI (CHEQ)","issue":"Inaccurate geolocation of camera pixels due to mis-aligned flightlines in lidar point clouds which also affected the lidar-derived DSMs, used in the camera orthorectification. This issue may introduce pixel geolocation errors on the order of centimeters to meters for small portions of the site.","resolution":"2014 DSNY & HARV, 2018 ABBY: Lidar lines were properly aligned using BayesMap StripAlign software, lidar DSM was re-processed, and camera re-processed to improve orthorectification, available in RELEASE-2025. For the remainder of the sites and dates, camera images will be reprocessed and made available as part of RELEASE-2026."},{"id":108210,"parentIssueID":97904,"issueDate":"2024-11-15T00:00:00Z","resolvedDate":"2025-01-29T00:00:00Z","dateRangeStart":"2019-08-25T00:00:00Z","dateRangeEnd":"2019-08-27T00:00:00Z","locationAffected":"JORN","issue":"Inaccurate geolocation of camera pixels due to mis-aligned flightlines in lidar point clouds which also affected the lidar-derived DSMs, used in the camera orthorectification. This issue may introduce pixel geolocation errors on the order of centimeters to meters for small portions of the site.","resolution":"2014 DSNY & HARV, 2018 ABBY: Lidar lines were properly aligned using BayesMap StripAlign software, lidar DSM was re-processed, and camera re-processed to improve orthorectification, available in RELEASE-2025. For the remainder of the sites and dates, camera images will be reprocessed and made available as part of RELEASE-2026."},{"id":108211,"parentIssueID":null,"issueDate":"2025-12-11T00:00:00Z","resolvedDate":"2026-01-23T00:00:00Z","dateRangeStart":"2016-08-18T00:00:00Z","dateRangeEnd":"2016-08-18T00:00:00Z","locationAffected":"HOPB","issue":"Lidar data were output with ellipsoidal heights instead of using the Geoid12a model; this affected the lidar-derived DSMs, used in the camera orthorectification.","resolution":"Camera products re-generated with correct Lidar DEM. Available in RELEASE-2026."},{"id":108212,"parentIssueID":108211,"issueDate":"2025-12-11T00:00:00Z","resolvedDate":"2026-01-23T00:00:00Z","dateRangeStart":"2017-08-23T00:00:00Z","dateRangeEnd":"2017-08-23T00:00:00Z","locationAffected":"HOPB","issue":"Lidar data were output with ellipsoidal heights instead of using the Geoid12a model; this affected the lidar-derived DSMs, used in the camera orthorectification.","resolution":"Camera products re-generated with correct Lidar DEM. 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