A NEW REALIZATION OF THE GLOBAL LUNAR REFERENCE FRAME BASED ON CO-REGISTERED LOLA TRACKS
We present a method that aligns lunar south and north pole LOLA DTMs using selected LOLA tracks and co-registration techniques. The selected LOLA tracks were then co-registered to the aligned polar DTMs with the aim to create a new LOLA frame of high relative accuracy. At the poles the relative accu...
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Online Access: | https://doi.org/10.5194/isprs-archives-XLII-3-397-2018 https://doaj.org/article/bd4f56d4769c456fa2631f771f5cb196 |
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ftdoajarticles:oai:doaj.org/article:bd4f56d4769c456fa2631f771f5cb196 2023-05-15T17:39:41+02:00 A NEW REALIZATION OF THE GLOBAL LUNAR REFERENCE FRAME BASED ON CO-REGISTERED LOLA TRACKS P. Gläser I. Haase J. Oberst 2018-04-01T00:00:00Z https://doi.org/10.5194/isprs-archives-XLII-3-397-2018 https://doaj.org/article/bd4f56d4769c456fa2631f771f5cb196 EN eng Copernicus Publications https://www.int-arch-photogramm-remote-sens-spatial-inf-sci.net/XLII-3/397/2018/isprs-archives-XLII-3-397-2018.pdf https://doaj.org/toc/1682-1750 https://doaj.org/toc/2194-9034 doi:10.5194/isprs-archives-XLII-3-397-2018 1682-1750 2194-9034 https://doaj.org/article/bd4f56d4769c456fa2631f771f5cb196 The International Archives of the Photogrammetry, Remote Sensing and Spatial Information Sciences, Vol XLII-3, Pp 397-401 (2018) Technology T Engineering (General). Civil engineering (General) TA1-2040 Applied optics. Photonics TA1501-1820 article 2018 ftdoajarticles https://doi.org/10.5194/isprs-archives-XLII-3-397-2018 2022-12-31T01:33:36Z We present a method that aligns lunar south and north pole LOLA DTMs using selected LOLA tracks and co-registration techniques. The selected LOLA tracks were then co-registered to the aligned polar DTMs with the aim to create a new LOLA frame of high relative accuracy. At the poles the relative accuracy of the resulting LOLA frame improved in comparison with the original LOLA frame, especially at the north pole. At lower latitudes on the lunar near side we could show that we achieve smaller residuals between our LOLA frame and a photogrammetrically derived reference DTM than with the original LOLA frame. On the far side we could not achieve better results which we believe is stemming from the generally less accurate orbit knowledge there. From the aligned polar DTMs we were able to derive a polar radius of 1738,049 km. Article in Journal/Newspaper North Pole Directory of Open Access Journals: DOAJ Articles Lola ENVELOPE(-44.700,-44.700,-60.717,-60.717) North Pole The International Archives of the Photogrammetry, Remote Sensing and Spatial Information Sciences XLII-3 397 401 |
institution |
Open Polar |
collection |
Directory of Open Access Journals: DOAJ Articles |
op_collection_id |
ftdoajarticles |
language |
English |
topic |
Technology T Engineering (General). Civil engineering (General) TA1-2040 Applied optics. Photonics TA1501-1820 |
spellingShingle |
Technology T Engineering (General). Civil engineering (General) TA1-2040 Applied optics. Photonics TA1501-1820 P. Gläser I. Haase J. Oberst A NEW REALIZATION OF THE GLOBAL LUNAR REFERENCE FRAME BASED ON CO-REGISTERED LOLA TRACKS |
topic_facet |
Technology T Engineering (General). Civil engineering (General) TA1-2040 Applied optics. Photonics TA1501-1820 |
description |
We present a method that aligns lunar south and north pole LOLA DTMs using selected LOLA tracks and co-registration techniques. The selected LOLA tracks were then co-registered to the aligned polar DTMs with the aim to create a new LOLA frame of high relative accuracy. At the poles the relative accuracy of the resulting LOLA frame improved in comparison with the original LOLA frame, especially at the north pole. At lower latitudes on the lunar near side we could show that we achieve smaller residuals between our LOLA frame and a photogrammetrically derived reference DTM than with the original LOLA frame. On the far side we could not achieve better results which we believe is stemming from the generally less accurate orbit knowledge there. From the aligned polar DTMs we were able to derive a polar radius of 1738,049 km. |
format |
Article in Journal/Newspaper |
author |
P. Gläser I. Haase J. Oberst |
author_facet |
P. Gläser I. Haase J. Oberst |
author_sort |
P. Gläser |
title |
A NEW REALIZATION OF THE GLOBAL LUNAR REFERENCE FRAME BASED ON CO-REGISTERED LOLA TRACKS |
title_short |
A NEW REALIZATION OF THE GLOBAL LUNAR REFERENCE FRAME BASED ON CO-REGISTERED LOLA TRACKS |
title_full |
A NEW REALIZATION OF THE GLOBAL LUNAR REFERENCE FRAME BASED ON CO-REGISTERED LOLA TRACKS |
title_fullStr |
A NEW REALIZATION OF THE GLOBAL LUNAR REFERENCE FRAME BASED ON CO-REGISTERED LOLA TRACKS |
title_full_unstemmed |
A NEW REALIZATION OF THE GLOBAL LUNAR REFERENCE FRAME BASED ON CO-REGISTERED LOLA TRACKS |
title_sort |
new realization of the global lunar reference frame based on co-registered lola tracks |
publisher |
Copernicus Publications |
publishDate |
2018 |
url |
https://doi.org/10.5194/isprs-archives-XLII-3-397-2018 https://doaj.org/article/bd4f56d4769c456fa2631f771f5cb196 |
long_lat |
ENVELOPE(-44.700,-44.700,-60.717,-60.717) |
geographic |
Lola North Pole |
geographic_facet |
Lola North Pole |
genre |
North Pole |
genre_facet |
North Pole |
op_source |
The International Archives of the Photogrammetry, Remote Sensing and Spatial Information Sciences, Vol XLII-3, Pp 397-401 (2018) |
op_relation |
https://www.int-arch-photogramm-remote-sens-spatial-inf-sci.net/XLII-3/397/2018/isprs-archives-XLII-3-397-2018.pdf https://doaj.org/toc/1682-1750 https://doaj.org/toc/2194-9034 doi:10.5194/isprs-archives-XLII-3-397-2018 1682-1750 2194-9034 https://doaj.org/article/bd4f56d4769c456fa2631f771f5cb196 |
op_doi |
https://doi.org/10.5194/isprs-archives-XLII-3-397-2018 |
container_title |
The International Archives of the Photogrammetry, Remote Sensing and Spatial Information Sciences |
container_volume |
XLII-3 |
container_start_page |
397 |
op_container_end_page |
401 |
_version_ |
1766140458860281856 |