Unmanned Aerial System (UAS) and Structure From Motion (SfM) 3-dimensional modeling of intertidal archaeological features in Fulford Harbour, Saltspring Island, British Columbia, Canada.
Clam garden intertidal features were constructed and maintained by First Nations peoples over thousands of years and are identified throughout coastal British Columbia and Alaska. The thesis study site is the Gulf Islands National Park Reserve Clam Garden Restoration Project, in Fulford Harbour on S...
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Language: | English |
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2017
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Online Access: | http://hdl.handle.net/10613/5008 |
_version_ | 1821514582492971008 |
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author | Laidlaw, Shawn |
author_facet | Laidlaw, Shawn |
author_sort | Laidlaw, Shawn |
collection | Royal Roads University: DSpace @ RRU |
description | Clam garden intertidal features were constructed and maintained by First Nations peoples over thousands of years and are identified throughout coastal British Columbia and Alaska. The thesis study site is the Gulf Islands National Park Reserve Clam Garden Restoration Project, in Fulford Harbour on Salt Spring Island, British Columbia, Canada. Images were gathered of the Fulford Harbour clam garden using a UAS – or drone and these were processed using SfM software to create a DSM and Orthomosaic of the clam garden. This approach was compared with existing technologies such as LiDAR and traditional photogrammetry, and further applications in the intertidal environment and archaeological fields were considered. Novel techniques were developed, such as the use of natural features as GCPs. It was demonstrated that developing a DSM and orthomosaic is possible for scientific purposes by non-experts in geospatial and survey techniques, and that this can be executed with high resource efficiency. |
genre | First Nations Alaska |
genre_facet | First Nations Alaska |
geographic | Canada British Columbia Spring Island |
geographic_facet | Canada British Columbia Spring Island |
id | ftroyalroadsuniv:oai:https://www.viurrspace.ca:10613/5008 |
institution | Open Polar |
language | English |
long_lat | ENVELOPE(-125.003,-125.003,54.000,54.000) ENVELOPE(-55.831,-55.831,51.233,51.233) |
op_collection_id | ftroyalroadsuniv |
op_relation | http://hdl.handle.net/10613/5008 |
publishDate | 2017 |
record_format | openpolar |
spelling | ftroyalroadsuniv:oai:https://www.viurrspace.ca:10613/5008 2025-01-16T21:56:11+00:00 Unmanned Aerial System (UAS) and Structure From Motion (SfM) 3-dimensional modeling of intertidal archaeological features in Fulford Harbour, Saltspring Island, British Columbia, Canada. Laidlaw, Shawn 2017-06-27 application/pdf image/tiff http://hdl.handle.net/10613/5008 en eng http://hdl.handle.net/10613/5008 Clam Garden Drone SfM UAS UAV Unmanned Aerial System 2017 ftroyalroadsuniv 2024-08-23T03:43:15Z Clam garden intertidal features were constructed and maintained by First Nations peoples over thousands of years and are identified throughout coastal British Columbia and Alaska. The thesis study site is the Gulf Islands National Park Reserve Clam Garden Restoration Project, in Fulford Harbour on Salt Spring Island, British Columbia, Canada. Images were gathered of the Fulford Harbour clam garden using a UAS – or drone and these were processed using SfM software to create a DSM and Orthomosaic of the clam garden. This approach was compared with existing technologies such as LiDAR and traditional photogrammetry, and further applications in the intertidal environment and archaeological fields were considered. Novel techniques were developed, such as the use of natural features as GCPs. It was demonstrated that developing a DSM and orthomosaic is possible for scientific purposes by non-experts in geospatial and survey techniques, and that this can be executed with high resource efficiency. Other/Unknown Material First Nations Alaska Royal Roads University: DSpace @ RRU Canada British Columbia ENVELOPE(-125.003,-125.003,54.000,54.000) Spring Island ENVELOPE(-55.831,-55.831,51.233,51.233) |
spellingShingle | Clam Garden Drone SfM UAS UAV Unmanned Aerial System Laidlaw, Shawn Unmanned Aerial System (UAS) and Structure From Motion (SfM) 3-dimensional modeling of intertidal archaeological features in Fulford Harbour, Saltspring Island, British Columbia, Canada. |
title | Unmanned Aerial System (UAS) and Structure From Motion (SfM) 3-dimensional modeling of intertidal archaeological features in Fulford Harbour, Saltspring Island, British Columbia, Canada. |
title_full | Unmanned Aerial System (UAS) and Structure From Motion (SfM) 3-dimensional modeling of intertidal archaeological features in Fulford Harbour, Saltspring Island, British Columbia, Canada. |
title_fullStr | Unmanned Aerial System (UAS) and Structure From Motion (SfM) 3-dimensional modeling of intertidal archaeological features in Fulford Harbour, Saltspring Island, British Columbia, Canada. |
title_full_unstemmed | Unmanned Aerial System (UAS) and Structure From Motion (SfM) 3-dimensional modeling of intertidal archaeological features in Fulford Harbour, Saltspring Island, British Columbia, Canada. |
title_short | Unmanned Aerial System (UAS) and Structure From Motion (SfM) 3-dimensional modeling of intertidal archaeological features in Fulford Harbour, Saltspring Island, British Columbia, Canada. |
title_sort | unmanned aerial system (uas) and structure from motion (sfm) 3-dimensional modeling of intertidal archaeological features in fulford harbour, saltspring island, british columbia, canada. |
topic | Clam Garden Drone SfM UAS UAV Unmanned Aerial System |
topic_facet | Clam Garden Drone SfM UAS UAV Unmanned Aerial System |
url | http://hdl.handle.net/10613/5008 |