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in Individual tree TLS point clouds for tree volume estimation
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9 | "date": "[{\"date\": \"2020-11-24\", \"date_type\": \"collected\", | 9 | "date": "[{\"date\": \"2020-11-24\", \"date_type\": \"collected\", | ||
10 | \"end_date\": \"2021-02-25\"}]", | 10 | \"end_date\": \"2021-02-25\"}]", | ||
11 | "doi": "10.16904/envidat.403", | 11 | "doi": "10.16904/envidat.403", | ||
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36 | "license_id": "cc-by-sa", | 36 | "license_id": "cc-by-sa", | ||
37 | "license_title": "Creative Commons Attribution Share-Alike | 37 | "license_title": "Creative Commons Attribution Share-Alike | ||
38 | (CC-BY-SA)", | 38 | (CC-BY-SA)", | ||
39 | "license_url": "https://creativecommons.org/licenses/by-sa/4.0/", | 39 | "license_url": "https://creativecommons.org/licenses/by-sa/4.0/", | ||
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n | 45 | "metadata_modified": "2023-05-17T14:00:25.874909", | n | 45 | "metadata_modified": "2023-05-17T14:17:26.705274", |
46 | "name": | 46 | "name": | ||
47 | "individual-tree-tls-point-clouds-for-tree-volume-estimation", | 47 | "individual-tree-tls-point-clouds-for-tree-volume-estimation", | ||
48 | "notes": "## Dataset\r\nThis dataset is based on terrestrial laser | 48 | "notes": "## Dataset\r\nThis dataset is based on terrestrial laser | ||
49 | scanning (TLS) data acquired during winter 2020/2021 in leaf-off | 49 | scanning (TLS) data acquired during winter 2020/2021 in leaf-off | ||
50 | conditions, with a Leica BLK 360 instrument following a tree-centric | 50 | conditions, with a Leica BLK 360 instrument following a tree-centric | ||
51 | scanning pattern. \r\nThe data was acquired on two sites (47.42\u00b0N | 51 | scanning pattern. \r\nThe data was acquired on two sites (47.42\u00b0N | ||
52 | 8.49\u00b0E and 47.504\u00b0N, 7.78\u00b0E), both of which were | 52 | 8.49\u00b0E and 47.504\u00b0N, 7.78\u00b0E), both of which were | ||
53 | managed mixed temperate forest stands.\r\nIndividual trees were | 53 | managed mixed temperate forest stands.\r\nIndividual trees were | ||
54 | semi-automatically segmented from the co-registered TLS point | 54 | semi-automatically segmented from the co-registered TLS point | ||
55 | clouds.\r\n\r\n## Background\r\nAccurate estimates of individual tree | 55 | clouds.\r\n\r\n## Background\r\nAccurate estimates of individual tree | ||
56 | volume or biomass within forest inventories are essential for | 56 | volume or biomass within forest inventories are essential for | ||
57 | calibration and validation of biomass mapping products based on Earth | 57 | calibration and validation of biomass mapping products based on Earth | ||
58 | observation data.\r\nTerrestrial laser scanning (TLS) enables detailed | 58 | observation data.\r\nTerrestrial laser scanning (TLS) enables detailed | ||
59 | and non-destructive volume estimation of individual trees, with | 59 | and non-destructive volume estimation of individual trees, with | ||
60 | existing approaches ranging from simple geometrical features to | 60 | existing approaches ranging from simple geometrical features to | ||
61 | virtual 3D reconstruction of entire trees. Validating such approaches | 61 | virtual 3D reconstruction of entire trees. Validating such approaches | ||
62 | with weight measurements is a key step before the integration of TLS | 62 | with weight measurements is a key step before the integration of TLS | ||
63 | or other close-range technologies into operational applications such | 63 | or other close-range technologies into operational applications such | ||
64 | as forest inventories.\r\nIn this study, we firstly evaluate | 64 | as forest inventories.\r\nIn this study, we firstly evaluate | ||
65 | individual tree volume estimation approaches based on 3D | 65 | individual tree volume estimation approaches based on 3D | ||
66 | reconstruction through quantitative structure models (QSM) against | 66 | reconstruction through quantitative structure models (QSM) against | ||
67 | destructive reference data of 60 trees and compare them to operational | 67 | destructive reference data of 60 trees and compare them to operational | ||
68 | allometric scaling models (ASM).\r\nSecondly, we determine the | 68 | allometric scaling models (ASM).\r\nSecondly, we determine the | ||
69 | explanatory power of TLS-derived geometric parameters regarding total | 69 | explanatory power of TLS-derived geometric parameters regarding total | ||
70 | tree, stem, coarse wood and fine branch volume.", | 70 | tree, stem, coarse wood and fine branch volume.", | ||
71 | "num_resources": 4, | 71 | "num_resources": 4, | ||
72 | "num_tags": 6, | 72 | "num_tags": 6, | ||
73 | "organization": { | 73 | "organization": { | ||
74 | "approval_status": "approved", | 74 | "approval_status": "approved", | ||
75 | "created": "2016-07-05T13:46:14.456454", | 75 | "created": "2016-07-05T13:46:14.456454", | ||
76 | "description": "The Swiss National Forest Inventory records the | 76 | "description": "The Swiss National Forest Inventory records the | ||
77 | current state and the changes of the Swiss forest. The survey obtains | 77 | current state and the changes of the Swiss forest. The survey obtains | ||
78 | data about trees, stands, sample plots and through enquiries at the | 78 | data about trees, stands, sample plots and through enquiries at the | ||
79 | local forest service.\r\n\r\nThe NFI carried out by the Swiss Federal | 79 | local forest service.\r\n\r\nThe NFI carried out by the Swiss Federal | ||
80 | Institute for Forest, Snow and Landscape Research (WSL) in | 80 | Institute for Forest, Snow and Landscape Research (WSL) in | ||
81 | collaboration with the Forest Division at Federal Office for the | 81 | collaboration with the Forest Division at Federal Office for the | ||
82 | Environment (FOEN ). The WSL is responsible for the planning, survey | 82 | Environment (FOEN ). The WSL is responsible for the planning, survey | ||
83 | and analysis, as well as the scientific interpretation and publication | 83 | and analysis, as well as the scientific interpretation and publication | ||
84 | of the NFI. The political interpretation and implementation is done by | 84 | of the NFI. The political interpretation and implementation is done by | ||
85 | the Forest Division.\r\n\r\nThe first survey (LFI1) took place from | 85 | the Forest Division.\r\n\r\nThe first survey (LFI1) took place from | ||
86 | 1983\u201385, the second survey followed in 1993\u201395 and the third | 86 | 1983\u201385, the second survey followed in 1993\u201395 and the third | ||
87 | inventory was carried out 2004\u20132006. Since 2009, the continuous | 87 | inventory was carried out 2004\u20132006. Since 2009, the continuous | ||
88 | survey of the fourth NFI (2009\u20132017) has been in | 88 | survey of the fourth NFI (2009\u20132017) has been in | ||
89 | progress.\r\n\r\nMore information: https://www.lfi.ch/lfi/lfi-en.php", | 89 | progress.\r\n\r\nMore information: https://www.lfi.ch/lfi/lfi-en.php", | ||
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94 | "state": "active", | 94 | "state": "active", | ||
95 | "title": "NFI", | 95 | "title": "NFI", | ||
96 | "type": "organization" | 96 | "type": "organization" | ||
97 | }, | 97 | }, | ||
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100 | "publication": "{\"publication_year\": \"2023\", \"publisher\": | 100 | "publication": "{\"publication_year\": \"2023\", \"publisher\": | ||
101 | \"EnviDat\"}", | 101 | \"EnviDat\"}", | ||
t | 102 | "publication_state": "approved", | t | 102 | "publication_state": "published", |
103 | "related_datasets": "", | 103 | "related_datasets": "", | ||
104 | "related_publications": "Bornand, A., Rehush, N., Morsdorf, F., | 104 | "related_publications": "Bornand, A., Rehush, N., Morsdorf, F., | ||
105 | Th\u00fcrig, E., Abegg, M., Individual Tree Volume Estimation with | 105 | Th\u00fcrig, E., Abegg, M., Individual Tree Volume Estimation with | ||
106 | Terrestrial Laser Scanning: Evaluating Reconstructive and Allometric | 106 | Terrestrial Laser Scanning: Evaluating Reconstructive and Allometric | ||
107 | Approaches. Available at SSRN: https://ssrn.com/abstract=4357176 or | 107 | Approaches. Available at SSRN: https://ssrn.com/abstract=4357176 or | ||
108 | http://dx.doi.org/10.2139/ssrn.4357176 ", | 108 | http://dx.doi.org/10.2139/ssrn.4357176 ", | ||
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112 | "resource_type_general": "dataset", | 112 | "resource_type_general": "dataset", | ||
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117 | "created": "2023-04-21T09:14:29.524654", | 117 | "created": "2023-04-21T09:14:29.524654", | ||
118 | "description": "\"ASM\" denotes volume estimates calculated by | 118 | "description": "\"ASM\" denotes volume estimates calculated by | ||
119 | allometric scaling models (as used in Swiss NFI), based on tree | 119 | allometric scaling models (as used in Swiss NFI), based on tree | ||
120 | height, DBH and D7.\r\n\"QSM\" denotes volume estimates derived from | 120 | height, DBH and D7.\r\n\"QSM\" denotes volume estimates derived from | ||
121 | TLS point clouds by quantitative structure models (QSM).\r\nThe | 121 | TLS point clouds by quantitative structure models (QSM).\r\nThe | ||
122 | remaining variables are geometrical features directly calculated from | 122 | remaining variables are geometrical features directly calculated from | ||
123 | single tree TLS point clouds.\r\nFor more detailed variable | 123 | single tree TLS point clouds.\r\nFor more detailed variable | ||
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233 | "resource_type": null, | 233 | "resource_type": null, | ||
234 | "restricted": "{\"allowed_users\": \"\", \"level\": \"public\", | 234 | "restricted": "{\"allowed_users\": \"\", \"level\": \"public\", | ||
235 | \"shared_secret\": \"\"}", | 235 | \"shared_secret\": \"\"}", | ||
236 | "size": null, | 236 | "size": null, | ||
237 | "state": "active", | 237 | "state": "active", | ||
238 | "url": | 238 | "url": | ||
239 | intclouds/20230516_TLSPointClouds_volumeEstimation/data/site2_AD.zip", | 239 | intclouds/20230516_TLSPointClouds_volumeEstimation/data/site2_AD.zip", | ||
240 | "url_type": null | 240 | "url_type": null | ||
241 | } | 241 | } | ||
242 | ], | 242 | ], | ||
243 | "spatial": | 243 | "spatial": | ||
244 | 53515625,47.25608727534246],[7.601165771484375,47.25608727534246]]]}", | 244 | 53515625,47.25608727534246],[7.601165771484375,47.25608727534246]]]}", | ||
245 | "spatial_info": "Switzerland", | 245 | "spatial_info": "Switzerland", | ||
246 | "state": "active", | 246 | "state": "active", | ||
247 | "subtitle": "", | 247 | "subtitle": "", | ||
248 | "tags": [ | 248 | "tags": [ | ||
249 | { | 249 | { | ||
250 | "display_name": "BIOMASS", | 250 | "display_name": "BIOMASS", | ||
251 | "id": "29a912d6-c329-410f-9b48-5a0c31471fce", | 251 | "id": "29a912d6-c329-410f-9b48-5a0c31471fce", | ||
252 | "name": "BIOMASS", | 252 | "name": "BIOMASS", | ||
253 | "state": "active", | 253 | "state": "active", | ||
254 | "vocabulary_id": null | 254 | "vocabulary_id": null | ||
255 | }, | 255 | }, | ||
256 | { | 256 | { | ||
257 | "display_name": "FOREST INVENTORY", | 257 | "display_name": "FOREST INVENTORY", | ||
258 | "id": "d1b2883f-be82-426b-8a5e-fd6d36bc2855", | 258 | "id": "d1b2883f-be82-426b-8a5e-fd6d36bc2855", | ||
259 | "name": "FOREST INVENTORY", | 259 | "name": "FOREST INVENTORY", | ||
260 | "state": "active", | 260 | "state": "active", | ||
261 | "vocabulary_id": null | 261 | "vocabulary_id": null | ||
262 | }, | 262 | }, | ||
263 | { | 263 | { | ||
264 | "display_name": "LIDAR", | 264 | "display_name": "LIDAR", | ||
265 | "id": "4aa2ac12-ba0a-461c-bfb0-4ee2bc3bdc2d", | 265 | "id": "4aa2ac12-ba0a-461c-bfb0-4ee2bc3bdc2d", | ||
266 | "name": "LIDAR", | 266 | "name": "LIDAR", | ||
267 | "state": "active", | 267 | "state": "active", | ||
268 | "vocabulary_id": null | 268 | "vocabulary_id": null | ||
269 | }, | 269 | }, | ||
270 | { | 270 | { | ||
271 | "display_name": "SINGLE TREE", | 271 | "display_name": "SINGLE TREE", | ||
272 | "id": "9b357882-3364-4173-bb6c-53c688429e2c", | 272 | "id": "9b357882-3364-4173-bb6c-53c688429e2c", | ||
273 | "name": "SINGLE TREE", | 273 | "name": "SINGLE TREE", | ||
274 | "state": "active", | 274 | "state": "active", | ||
275 | "vocabulary_id": null | 275 | "vocabulary_id": null | ||
276 | }, | 276 | }, | ||
277 | { | 277 | { | ||
278 | "display_name": "TERRESTIRAL LASERSCANNING", | 278 | "display_name": "TERRESTIRAL LASERSCANNING", | ||
279 | "id": "03fba638-34ac-4bf3-a0f6-cbf4b5f909ef", | 279 | "id": "03fba638-34ac-4bf3-a0f6-cbf4b5f909ef", | ||
280 | "name": "TERRESTIRAL LASERSCANNING", | 280 | "name": "TERRESTIRAL LASERSCANNING", | ||
281 | "state": "active", | 281 | "state": "active", | ||
282 | "vocabulary_id": null | 282 | "vocabulary_id": null | ||
283 | }, | 283 | }, | ||
284 | { | 284 | { | ||
285 | "display_name": "TREE VOLUME", | 285 | "display_name": "TREE VOLUME", | ||
286 | "id": "a5929685-d39e-4e45-9a87-6ebcdd0dfbf4", | 286 | "id": "a5929685-d39e-4e45-9a87-6ebcdd0dfbf4", | ||
287 | "name": "TREE VOLUME", | 287 | "name": "TREE VOLUME", | ||
288 | "state": "active", | 288 | "state": "active", | ||
289 | "vocabulary_id": null | 289 | "vocabulary_id": null | ||
290 | } | 290 | } | ||
291 | ], | 291 | ], | ||
292 | "title": "Individual tree TLS point clouds for tree volume | 292 | "title": "Individual tree TLS point clouds for tree volume | ||
293 | estimation", | 293 | estimation", | ||
294 | "type": "dataset", | 294 | "type": "dataset", | ||
295 | "url": null, | 295 | "url": null, | ||
296 | "version": "1.0" | 296 | "version": "1.0" | ||
297 | } | 297 | } |