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Etendre la recherche sur niveau(x) vers le bas
Cultivation profile: a visual evaluation method of soil structure adapted to the analysis of the impacts of mechanical site preparation in forest plantations / Catherine Collet in European Journal of Forest Research, vol 140 n° 1 (February 2021)
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[article]
Titre : Cultivation profile: a visual evaluation method of soil structure adapted to the analysis of the impacts of mechanical site preparation in forest plantations Type de document : Article/Communication Auteurs : Catherine Collet, Auteur ; Florian Vast, Auteur ; Claudine Richter, Auteur ; et al., Auteur Année de publication : 2021 Article en page(s) : pp 65 - 76 Note générale : bibliographie Langues : Anglais (eng) Descripteur : [Termes descripteurs IGN] composition des sols
[Termes descripteurs IGN] état du sol
[Termes descripteurs IGN] foresterie
[Termes descripteurs IGN] gestion forestière durable
[Termes descripteurs IGN] plantation forestière
[Termes descripteurs IGN] qualité du sol
[Termes descripteurs IGN] visualisation
[Vedettes matières IGN] SylvicultureRésumé : (auteur) Mechanical site preparation (MSP) is widely used in forestry to improve plantation success. Although it is known to alter soil properties, its direct effects on soil structure have rarely been described. The cultivation profile is a visual soil evaluation (VSE) method developed in agricultural research to analyse the impacts of cultivation practices on soil structure. The objective of the study was to adapt the method to forest plantations in order to analyse the effects of MSP on soil quality. Cultivation profiles were performed in six experimental plantation sites located in Northern France. The method made it possible to compare the impacts on soil structure of three MSP methods. It provided a schematic representation of the soil structural quality and a quantitative estimation of the volume of soil favourable to seedling root growth. It also highlighted unexpected negative effects of some MSP methods on soil structure, such as the creation of small cavities, the presence of compacted soil volumes due to wheel tracks or smeared soil volumes due to tool pass, and the pseudogleisation of soil zones due to changes in water circulation in the soil. The relevance and limitations of VSE methods in the context of forest plantation as well as the expected future development of the methods are discussed. Numéro de notice : A2021-257 Affiliation des auteurs : non IGN Thématique : FORET Nature : Article nature-HAL : ArtAvecCL-RevueIntern DOI : 10.1007/s10342-020-01315-2 date de publication en ligne : 12/09/2020 En ligne : https://doi.org/10.1007/s10342-020-01315-2 Format de la ressource électronique : url article Permalink : https://documentation.ensg.eu/index.php?lvl=notice_display&id=97293
in European Journal of Forest Research > vol 140 n° 1 (February 2021) . - pp 65 - 76[article]Web‐based real‐time visualization of large‐scale weather radar data using 3D tiles / Mingyue Lu in Transactions in GIS, Vol 25 n° 1 (February 2021)
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Titre : Web‐based real‐time visualization of large‐scale weather radar data using 3D tiles Type de document : Article/Communication Auteurs : Mingyue Lu, Auteur ; Xinhao Wang, Auteur ; Xintao Liu, Auteur ; et al., Auteur Année de publication : 2021 Article en page(s) : pp 25 - 43 Note générale : Bibliographie Langues : Anglais (eng) Descripteur : [Termes descripteurs IGN] Chine
[Termes descripteurs IGN] dalle
[Termes descripteurs IGN] données météorologiques
[Termes descripteurs IGN] données radar
[Termes descripteurs IGN] géomatique web
[Termes descripteurs IGN] grande échelle
[Termes descripteurs IGN] temps réel
[Termes descripteurs IGN] visualisation 3D
[Termes descripteurs IGN] Web des données
[Termes descripteurs IGN] WebSIG
[Vedettes matières IGN] GéovisualisationRésumé : (Auteur) Weather radar data play an important role in meteorological analysis and forecasting. In particular, web‐based real‐time 3D visualization will enable and enhance various meteorological applications by avoiding the dissemination of a large amount of data over the internet. Despite that, most existing studies are either limited to 2D or small‐scale data analytics due to methodological limitations. This article proposes a new framework to enable web‐based real‐time 3D visualization of large‐scale weather radar data using 3D tiles and WebGIS technology. The 3D tiles technology is an open specification for online streaming massive heterogeneous 3D geospatial datasets, which is designed to improve rendering performance and reduce memory consumption. First, the weather radar data from multiple single‐radar sites across a large coverage area are organized into a spliced grid data (i.e., weather radar composing data, WRCD). Next, the WRCD is converted into a widely used 3D tile data structure in four steps: data preprocessing, data indexing, data transformation, and 3D tile generation. Last, to validate the feasibility of the proposed strategy, a prototype, namely Meteo3D at https://202.195.237.252:82, is implemented to accommodate the WRCD collected from all the weather radar sites over the whole of China. The results show that near real‐time and accurate visualization for the monitoring and early warning of strong convective weather can be achieved. Numéro de notice : A2021-185 Affiliation des auteurs : non IGN Thématique : GEOMATIQUE Nature : Article nature-HAL : ArtAvecCL-RevueIntern DOI : 10.1111/tgis.12638 date de publication en ligne : 19/05/2020 En ligne : https://doi.org/10.1111/tgis.12638 Format de la ressource électronique : URL Article Permalink : https://documentation.ensg.eu/index.php?lvl=notice_display&id=97147
in Transactions in GIS > Vol 25 n° 1 (February 2021) . - pp 25 - 43[article]
Titre : Remote sensing and GIS Type de document : Guide/Manuel Auteurs : Basudeb Bhatta, Auteur Mention d'édition : 3ème édition Editeur : Oxford, Londres, ... : Oxford University Press Année de publication : 2021 Importance : 752 p. Format : 24 x 18 cm ISBN/ISSN/EAN : 978-0-19-949664-8 Note générale : Bibliographie
additional reading material with Oxford arealLangues : Anglais (eng) Descripteur : [Vedettes matières IGN] Télédétection
[Termes descripteurs IGN] acquisition d'images
[Termes descripteurs IGN] airborne multispectral scanner
[Termes descripteurs IGN] analyse spatiale
[Termes descripteurs IGN] Global Navigation Satellite System
[Termes descripteurs IGN] image hyperspectrale
[Termes descripteurs IGN] image thermique
[Termes descripteurs IGN] interféromètrie par radar à antenne synthétique
[Termes descripteurs IGN] Lidar
[Termes descripteurs IGN] modèle numérique de surface
[Termes descripteurs IGN] modèle numérique de terrain
[Termes descripteurs IGN] modélisation 3D
[Termes descripteurs IGN] orthorectification
[Termes descripteurs IGN] Passive and Active L and S band Sensor
[Termes descripteurs IGN] photographie aérienne
[Termes descripteurs IGN] Satellite Microwave Radiometer
[Termes descripteurs IGN] scène 3D
[Termes descripteurs IGN] stéréoscopie
[Termes descripteurs IGN] système d'information géographique
[Termes descripteurs IGN] traitement d'image
[Termes descripteurs IGN] visualisation 3DIndex. décimale : 35.00 Télédétection - généralités Résumé : (Editeur) Beginning with the history and basic concepts of remote sensing and GIS, the book gives an exhaustive coverage of optical, thermal, and microwave remote sensing, global navigation satellite systems (such as GPS and IRNSS), digital photogrammetry, visual image analysis, digital image processing, spatial and attribute data model, geospatial analysis, and planning, implementation, and management of GIS. It also presents the modern trends of remote sensing and GIS with an illustrated discussion on its numerous applications. Note de contenu : 1. Concept of Remote Sensing
1.1 Introduction
1.2 Distance of Remote Sensing
1.3 Definition of Remote Sensing
1.4 Remote Sensing: Art and/or Science
1.5 Data
1.6 Remote Sensing Process
1.7 Source of Energy
1.8 Interaction with Atmosphere
1.9 Interaction with Target
1.9.1 Hemispherical Absorptance, Transmittance, and Reflectan
1.10 Interaction with the Atmosphere Again
1.11 Recording of Energy by Sensor
1.12 Transmission, Reception, and Processing
1.13 Interpretation and Analysis
1.14 Applications of Remote Sensing
1.15 Advantages of Remote Sensing
1.16 Limitations of Remote Sensing
1.17 Ideal Remote Sensing System
2. Types of Remote Sensing and Sensor Characteristics
2.1 Introduction
2.2 Types of Remote Sensing
2.3 Characteristics of Images
2.4 Orbital Characteristics of Satellite
2.5 Remote Sensing Satellites
2.6 Concept of Swath
2.7 Concept of Nadir
2.8 Sensor Resolutions
2.9 Image Referencing System
2.9.1 Path
2.9.2 Row
2.9.3 Orbital Calendar
3. History of Remote Sensing and Indian Space Program
3.1 Introduction
3.2 The Early Age
3.3 The Middle Age
3.4 The Modern Age or Space Age
3.5 Indian Space Program
4. Photographic Imaging
4.1 Introduction
4.2 Camera Systems
4.3 Types of Camera
4.4 Filter
4.5 Film
4.6 Geometry of Aerial Photography
4.7 Ideal Time and Atmosphere for Aerial Remote Sensing
5. Digital Imaging
5.1 Introduction
5.2 Digital Image
5.3 Sensor
5.4 Imaging by Scanning Technique
5.5 Hyper-spectral Imaging
5.6 Imaging By Non-scanning Technique
5.7 Thermal Remote Sensing
5.8 Other Sensors
6. Microwave Remote Sensing
6.1 Introduction
6.2 Passive Microwave Remote Sensing
6.3 Active Microwave Remote Sensing
6.4 Radar Imaging
6.5 Airborne Versus Space-Borne Radars
6.6 Radar Systems
7. Ground-truth Data and Global Positioning System
7.1 Introduction
7.2 Requirements of Ground-Truth Data
7.3 Instruments for Ground Truthing
7.4 Parameters of Ground Truthing
7.5 Factors of Spectral Measurement
7.6 Global Navigation Satellite System
8. Photogrammetry
8.1 Introduction
8.2 Development of Photogrammetry
8.3 Classification of Photogrammetry
8.4 Photogrammetric Process
8.5 Acquisition of Imagery and its Support Data
8.6 Orientation and Triangulation
8.7 Stereo Model Compilation
8.8 Stereoscopic 3D Viewing
8.9 Stereoscopic Measurement
8.10 DTM/DEM Generation
8.11 Contour Map Generation
8.12 Orthorectification
8.13 3D Feature Extraction
8.14 3D Scene Modelling
8.15 Photogrammetry and LiDAR
8.16 Radargrammetry and Radar Interferometry
8.17 Limitations of Photogrammetry
9. Visual Image Interpretation
9.1 Introduction
9.2 Information Extraction by Human and Computer
9.3 Remote Sensing Data Products
9.4 Border or Marginal Information
9.5 Image Interpretation
9.6 Elements of Visual Image Interpretation
9.7 Interpretation Keys
9.8 Generation of Thematic Maps
9.9 Thermal Image Interpretation
9.10 Radar Image Interpretation
10. Digital Image Processing
10.1 Introduction
10.2 Categorization of Image Processing
10.3 Image Processing Systems
10.4 Digital Image
10.5 Media for Digital Data Recording, Storage, and Distribution
10.6 Data Formats of Digital Image
10.7 Header Information
10.8 Display of Digital Image
10.9 Pre-processing
10.10 Image Enhancement
10.11 Image Transformation
10.12 Image Classification
11. Data Integration, Analysis, and Presentation
11.1 Introduction
11.2 Multi-approach of Remote Sensing
11.3 Integration with Ground Truth and Other Ancillary Data
11.4 Integration of Transformed Data
11.5 Integration with GIS
11.6 Process of Remote Sensing Data Analysis
11.7 The Level of Detail
11.8 Limitations of Remote Sensing Data Analysis
11.9 Presentation
12. Applications of Remote Sensing
12.1 Introduction
12.2 Land Cover and Land Use
12.3 Agriculture
12.4 Forestry
12.5 Geology
12.6 Geomorphology
12.7 Urban Applications
12.8 Hydrology
12.9 Mapping
12.10 Oceans and Coastal Monitoring
12.11 Monitoring of Atmospheric Constituents
PART II Geographic Information Systems and Geospatial Analysis
13. Concept of Geographic Information Systems
13.1 Introduction
13.2 Definitions of GIS
13.3 Key Components of GIS
13.4 GIS-An Integration of Spatial and Attribute Information
13.5 GIS-Three Views of Information System
13.6 GIS and Related Terms
13.7 GIS-A Knowledge Hub
13.8 GIS-A Set of Interrelated Subsystems
13.9 GIS-An Information Infrastructure
13.10 Origin of GIS
14. Functions and Advantages of GIS
14.1 Introduction
14.2 Functions of GIS
14.3 Application Areas of GIS
14.4 Advantages of GIS
14.5 Functional Requirements of GIS
14.6 Limitations of GIS
15. Spatial Data Model
15.1 Introduction
15.2 Spatial, Thematic, and Temporal Dimensions of Geographic Data
15.3 Spatial Entity and Object
15.4 Spatial Data Model
15.5 Raster Data Model
15.6 Vector Data Model
15.7 Raster versus Vector
15.8 Object-Oriented Data Model
15.9 File Formats of Spatial Data
16. Attribute Data Management and Metadata Concept
16.1 Introduction
16.2 Concept of Database and DBMS
16.3 Advantages of DBMS
16.4 Functions of DBMS
16.5 File and Data Access
16.6 Data Models
16.7 Database Models
16.8 Data Models in GIS
16.9 Concept of SQL
16.10 Concept of Metadata
17. Process of GIS
17.1 Introduction
17.2 Data Capture
17.3 Data Sources
17.4 Data Encoding Methods
17.5 Linking of Spatial and Attribute Data
17.6 Organizing Data for Analysis
18. Geospatial Analysis
18.1 Introduction
18.2 Geospatial Data Analysis
18.3 Integration and Modelling of Spatial Data
18.4 Geospatial Data Analysis Methods
18.5 Database Query
18.6 Geospatial Measurements
18.7 Overlay Operations
18.8 Network Analysis
18.9 Surface Analysis
18.10 Geostatistics
18.11 Geovisualization
19. Planning, Implementation, and Management of GIS
19.1 Introduction
19.2 Planning of Project
19.3 Implementation of Project
19.4 Management of Project
19.5 Keys for Successful GIS
19.6 Reasons for Unsuccessful GIS
20. Modern Trends of GIS
20.1 Introduction
20.2 Local to Global Concept in GIS
20.3 Increase in Dimensions in GIS
20.4 Linear to Non-linear Techniques in GIS
20.5 Development in Relation between Geometry and Algebra in GIS
20.6 Development of Common Techniques in GIS
20.7 Integration of GIS and Remote Sensing
20.8 Integration of GIS and Multimedia
20.9 3D GIS
20.9.1 Virtual Reality in GIS
20.10 Integration of 3D GIS and Web GIS
20.11 4D GIS and Real-time GIS
20.12 Mobile GIS
20.12.1 Mobile mapping
20.13 Collaborative GIS (CGIS)
21. Change Detection and Geosimulation
21.1 Visual change detection
21.2 Thresholding
21.3 Image difference
21.4 Image regression
21.5 Image ratioing
21.6 Vegetation index differencing
21.7 Principal component differencing
21.8 Multi-temporal image stock classification
21.9 Post classification comparison
21.10 Change vector analysis
21.12 Cellular automata simulation
21.13 Multi-agent simulation
21.14 ANN learning in simulation
Appendix A - Concept of Map, Coordinate System, and Projection
Appendix B - Concept on Mathematical TopicsNuméro de notice : 26518 Affiliation des auteurs : non IGN Thématique : GEOMATIQUE/IMAGERIE/POSITIONNEMENT Nature : Manuel de cours DOI : sans Permalink : https://documentation.ensg.eu/index.php?lvl=notice_display&id=97342 Réservation
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Code-barres Cote Support Localisation Section Disponibilité 26518-01 35.00 Livre Centre de documentation Télédétection Disponible Topographic connection method for automated mapping of landslide inventories, study case: semi urban sub-basin from Monterrey, Northeast of México / Nelly L. Ramirez Serrato in Geocarto international, vol 35 n° 15 ([01/11/2020])
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Titre : Topographic connection method for automated mapping of landslide inventories, study case: semi urban sub-basin from Monterrey, Northeast of México Type de document : Article/Communication Auteurs : Nelly L. Ramirez Serrato, Auteur ; Fabiola D. Yepez-Rincon, Auteur ; Adrian L. Ferrino Fierro, Auteur Année de publication : 2020 Article en page(s) : pp 1706 - 1721 Note générale : bibliographie Langues : Anglais (eng) Descripteur : [Vedettes matières IGN] Applications photogrammétriques
[Termes descripteurs IGN] analyse diachronique
[Termes descripteurs IGN] cartographie des risques
[Termes descripteurs IGN] chaîne de traitement
[Termes descripteurs IGN] détection de contours
[Termes descripteurs IGN] données lidar
[Termes descripteurs IGN] données localisées 3D
[Termes descripteurs IGN] effondrement de terrain
[Termes descripteurs IGN] image satellite
[Termes descripteurs IGN] inventaire
[Termes descripteurs IGN] Mexique
[Termes descripteurs IGN] modèle numérique de surface
[Termes descripteurs IGN] semis de points
[Termes descripteurs IGN] visualisation 3DRésumé : (auteur) By nature, slopes are conformed by forces that are in constant balance. Altering this natural balance causes the sliding of soil towards lower zones. Landslides are a constant danger that compromises the general welfare of society. Landslides mapping is especially important for urban areas or development plans. The innovative aspect of this study is the creation of the Topographic Connection Method (TPCM) to automatically map landslides using two types of landslides 1) falls and 2) flows. TPCM cartography results were compared to a previously proven method (Contour Connection Method), as well as to the manual inventory method. Each method was run four times to locate changes through time by using satellite imagery, digital elevations models and 3D relief visualizations with data covering a period from 2012 to 2017. Results showed both falls and flows with all three methods and demonstrated that TPCM can improve mapping accuracy by up to 14%. Numéro de notice : A2020-659 Thématique : GEOMATIQUE/IMAGERIE Nature : Article nature-HAL : ArtAvecCL-RevueIntern DOI : 10.1080/10106049.2019.1581269 date de publication en ligne : 01/04/2019 En ligne : https://doi.org/10.1080/10106049.2019.1581269 Format de la ressource électronique : URL article Permalink : https://documentation.ensg.eu/index.php?lvl=notice_display&id=96132
in Geocarto international > vol 35 n° 15 [01/11/2020] . - pp 1706 - 1721[article]CityJSON in QGIS: Development of an open‐source plugin / Stelios Vitalis in Transactions in GIS, Vol 24 n° 5 (October 2020)
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[article]
Titre : CityJSON in QGIS: Development of an open‐source plugin Type de document : Article/Communication Auteurs : Stelios Vitalis, Auteur ; Ken Arroyo Ohori, Auteur ; Jantien Stoter, Auteur Année de publication : 2020 Article en page(s) : pp 1147-1164 Note générale : Bibliographie Langues : Anglais (eng) Descripteur : [Vedettes matières IGN] Systèmes d'information géographique
[Termes descripteurs IGN] CityGML
[Termes descripteurs IGN] édition en libre accès
[Termes descripteurs IGN] format JSON
[Termes descripteurs IGN] implémentation (informatique)
[Termes descripteurs IGN] modèle 3D de l'espace urbain
[Termes descripteurs IGN] module d'extension
[Termes descripteurs IGN] QGIS
[Termes descripteurs IGN] visualisation 3DRésumé : (Auteur) When QGIS 3.0 was released in 2018, it added support for 3D visualisation. At the same time, CityJSON has been developing as an easy‐to‐use JavaScript Object Notation (JSON) encoding for 3D city models using the CityGML 2.0 data model. Together, this opened the possibility to support semantic 3D city models in the popular open‐source GIS software for the first time. In order to add support for 3D city models in QGIS, we have developed a plugin that enables CityJSON datasets to be loaded. The plugin parses a CityJSON file and analyses its tree structure to identify all city objects. Then, the geometry and attributes of every city object are transformed into QGIS features and divided into layers according to user preferences. CityJSON parsing was proven to be straightforward and consistent when tested against several open datasets. One of the biggest challenges we faced, though, was mapping CityJSON’s hierarchical data structure to the relational model of QGIS. We undertook this issue by providing various methods on how geometries from the model are loaded as QGIS features. We intend to use the plugin for educational purposes in our university and we believe it can be proven a worthy tool for researchers and practitioners. Numéro de notice : A2020-498 Affiliation des auteurs : non IGN Thématique : GEOMATIQUE/INFORMATIQUE Nature : Article nature-HAL : ArtAvecCL-RevueIntern DOI : 10.1111/tgis.12657 date de publication en ligne : 24/06/2020 En ligne : https://doi.org/10.1111/tgis.12657 Format de la ressource électronique : URL Article Permalink : https://documentation.ensg.eu/index.php?lvl=notice_display&id=96198
in Transactions in GIS > Vol 24 n° 5 (October 2020) . - pp 1147-1164[article]3D reconstruction of internal wood decay using photogrammetry and sonic tomography / Junjie Zhang in Photogrammetric record, vol 35 n° 171 (September 2020)
PermalinkGeometric distortion of historical images for 3D visualization / Evelyn Paiz-Reyes in ISPRS Annals of the Photogrammetry, Remote Sensing and Spatial Information Sciences, V-2 (August 2020)
PermalinkSpatio-temporal mobility and Twitter: 3D visualisation of mobility flows / Joaquín Osorio Arjona in Journal of maps, vol 16 n° 1 ([02/01/2020])
PermalinkApplication of machine learning techniques for evidential 3D perception, in the context of autonomous driving / Edouard Capellier (2020)
PermalinkPermalinkPermalinkNumérisation, restitution et visualisation en 3D de sites patrimoniaux / Jonathan Chemla in XYZ, n° 161 (décembre 2019)
PermalinkPermalinkReprésentation des éléments juridiques dans une maquette BIM / Bamba Ngom in Géomatique expert, n° 128 (juin - juillet 2019)
PermalinkAn artificial bee colony-based algorithm to automatically create colour schemes for geovisualizations / Mingguang Wu in Cartographic journal (the), Vol 56 n° 2 (May 2019)
PermalinkiTowns, le nouveau moteur de visualisation 3D de données géospatiales du Géoportail / Mirela Konini in Responsabilité et environnement, n° 94 (Avril 2019)
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PermalinkPermalinkPermalink3D WebGIS : from visualization to analysis. An efficient browser-based 3D line-of-sight analysis / Michael Auer in ISPRS International journal of geo-information, vol 7 n° 7 (July 2018)
PermalinkLocal curvature entropy-based 3D terrain representation using a comprehensive Quadtree / Giyu Chen in ISPRS Journal of photogrammetry and remote sensing, vol 139 (May 2018)
Permalink3D visualization of trees based on a sphere-board model / Jiangfeng She in ISPRS International journal of geo-information, vol 7 n° 2 (February 2018)
PermalinkPermalinkPermalinkUnderground visualization: Web-app, virtual reality, ex situ and in situ augmented reality / Alexandre Devaux (2018)
PermalinkSNCF Réseau : de l'acquisition 3D à la diffusion de la donnée / Mathieu Regul in XYZ, n° 153 (décembre 2017 - février 2018)
PermalinkAn effective spherical panoramic LoD model for a mobile street view service / Xianxiong Liu in Transactions in GIS, vol 21 n° 5 (October 2017)
PermalinkUsing NoSQL databases in the 3D cadastre domain / Nenad Višnjevac in Geodetski vestnik, vol 61 n° 3 (September - November 2017)
PermalinkDernières nouvelles de QGIS ... et d'autres / Vincent Picavet in Géomatique expert, n° 117 (juillet - août 2017)
PermalinkDomains of uncertainty visualization research: a visual summary approach / Jennifer Smith Mason in Cartography and Geographic Information Science, Vol 44 n° 4 (July 2017)
PermalinkHow users perceive transparency in the 3D visualization of cadastre : testing its usability in an online questionnaire / Chen Wang in Geoinformatica [en ligne], vol 21 n° 3 (July - September 2017)
PermalinkInteractive shearing for terrain visualization : an expert study / Jonas Buddeberg in Geoinformatica [en ligne], vol 21 n° 3 (July - September 2017)
PermalinkPermalinkAssessment of urban energy performance through integration of BIM and GIS for smart city planning / Shinji Yamamura in Procedia Engineering, vol 180 ([01/06/2017])
PermalinkKnowledge-based data enrichment for HBIM: Exploring high-quality models using the semantic-web / Ramona Quattrini in Journal of Cultural Heritage, vol ([01/06/2017])
PermalinkSpatial query based virtual reality GIS analysis platform / Weixi Wang in Neurocomputing, vol (2017)
PermalinkExtending a BIM-based data model to support 3D digital management of complex ownership spaces / Behnam Atazadeh in International journal of geographical information science IJGIS, vol 31 n° 3-4 (March-April 2017)
PermalinkAerial lidar point cloud voxelization with its 3D ground filtering application / Liying Wang in Photogrammetric Engineering & Remote Sensing, PERS, vol 83 n° 2 (February 2017)
PermalinkEtude et méthodes d'intégration et d'interaction de données 3D complexes type "nuages de points" vers un web SIG / Victor Lambert (2017)
PermalinkPermalinkPermalinkAn inquiry on contrast enhancement methods for satellite images / Jose-Luis Lisani in IEEE Transactions on geoscience and remote sensing, vol 54 n° 12 (December 2016)
PermalinkSystematic effects in laser scanning and visualization by confidence regions / Karl Rudolf Koch in Journal of applied geodesy, vol 10 n° 4 (December 2016)
PermalinkRelevé topographique des environnements urbains [article originellement paru dans le numéro mai/juin 2016 de la revue italienne GEOMedia] / Luigi Colombo in Géomatique expert, n° 113 (novembre - décembre 2016)
PermalinkPermalinkLes troubles de la perception des couleurs en cartographie / Frédéric Miotto in Carto, le monde en cartes, n° 37 (septembre - octobre 2016)
PermalinkComputation and visualisation of the accuracy of old maps using differential distortion analysis / Manuel Claeys Boùùaert in International journal of geographical information science IJGIS, vol 30 n° 7- 8 (July - August 2016)
PermalinkJournées ESRI transports et infrastructure / Anonyme in Géomatique expert, n° 111 (juillet- août 2016)
Permalinkvol 117 - July 2016 - Multi-dimensional modeling, analysis and visualization (Bulletin de ISPRS Journal of photogrammetry and remote sensing) / Eric Guilbert
PermalinkA web-based 3D visualisation and assessment system for urban precinct scenario modelling / Roman Trubka in ISPRS Journal of photogrammetry and remote sensing, vol 117 (July 2016)
PermalinkLe 12ème Forum de la topographie : topographie et BIM / Tania Landes in XYZ, n° 147 (juin - août 2016)
PermalinkiTowns, framework web pour la donnée géographique 3D / Vincent Picavet in XYZ, n° 147 (juin - août 2016)
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PermalinkPermalinkEnsemble adaptive tile prefetching using fuzzy logic / Mehmet Fatih Uluat in International journal of geographical information science IJGIS, vol 30 n° 5-6 (May - June 2016)
PermalinkLe géoportail de la confédération: 3D Viewer et des 3D services / Cédric Métraux in Géomatique suisse, vol 114 n° 5 (mai 2016)
PermalinkLandSim3D v6 : vers une maquette numérique à l'échelle du territoire / Anonyme in Géomatique expert, n° 110 (mai - juin 2016)
PermalinkRobust approximation of the Medial Axis Transform of LiDAR point clouds as a tool for visualisation / Ravi Peters in Computers & geosciences, vol 90 part A (May 2016)
PermalinkPermalinkDie Fortführung des 3D-Gebäudemodells LoD2 in Nordrhein-Westfalen / Marco Oestereich in ZFV, Zeitschrift für Geodäsie, Geoinformation und Landmanagement, Vol 141 n° 3 (Mai - Juni 2016)
Permalinkn° 227 - mars - mai 2016 - Thèses en géomatique 2013-2015 (Bulletin de Cartes & Géomatique) / Anne Ruas
PermalinkConception et implémentation d'un modèle de style adapté à une application web 3D / Anouk Vinesse (2016)
PermalinkPermalinkPermalinkProjet PLU++ : vers un Plan Local d’Urbanisme plus intelligible et plus participatif / Mickaël Brasebin (2016)
PermalinkVisualisation and evaluation of flood uncertainties based on ensemble modelling / N. J. Lim in International journal of geographical information science IJGIS, vol 30 n° 1-2 (January - February 2016)
PermalinkBase de connaissances pour gérer des styles de rendus 3D / Mickaël Brasebin in Cartes & Géomatique, n° 226 (décembre 2015)
PermalinkSemantic volume texture for virtual city building model visualisation / Lin Li in Computers, Environment and Urban Systems, vol 54 (November 2015)
PermalinkWebGL based visualisation and analysis of stratigraphic data for the purposes of the mining industry / Adrian Kopec in Procedia Computer Science, vol 51 (2015)
PermalinkSketchUp as a construction tool for large-scale subsurface structures: three-dimensional visualization of the Parry Sound Domain, Grenville Province, Ontario / Jacob W.D. Strong in Cartographica, vol 50 n° 3 (Fall 2015)
PermalinkSmooth transformations between generalized 3D building models for visualization purposes / M. Kada in Cartography and Geographic Information Science, Vol 42 n° 4 (September 2015)
PermalinkColor and texture interpolation between orthoimagery and vector data / Charlotte Hoarau in ISPRS Annals of the Photogrammetry, Remote Sensing and Spatial Information Sciences, II-3 W5 (October 2015)
PermalinkWeb services for dynamic coloring of UAVSAR images / Jun Wang in Pure and applied geophysics, vol 172 n° 8 (August 2015)
PermalinkAutomatic transformation of different levels of detail in 3D GIS city models in CityGML / Yichuan Deng in International journal of 3-D information modeling, vol 4 n° 3 (July - September 2015)
PermalinkFrom historical map to online 3D recreation: the 1861 cadastral map of Horta (Barcelona) / Alexandre Nobajas in Cartography and Geographic Information Science, Vol 42 n° 3 (July 2015)
PermalinkPermalinkCartography-oriented design of 3D geospatial information visualization – overview and techniques / Amir Semmo in Cartographic journal (the), Vol 52 n° 2 (May 2015)
PermalinkPermalinkVisualization techniques for journey to crime flow data / Andrew Wheeler in Cartography and Geographic Information Science, Vol 42 n° 2 (April 2015)
Permalink3-D Geovisualization of satellite images on smart devices by the integration of spatial DBMS, RESTful API and WebGL / Hyong-Woo Kim in Geocarto international, vol 30 n° 3 - 4 (March - April 2015)
PermalinkPermalinkHyperspectral Band Selection by Multitask Sparsity Pursuit / Yuan Yuan in IEEE Transactions on geoscience and remote sensing, vol 53 n° 2 (February 2015)
PermalinkPermalinkA comparison of usefulness of 2D and 3D representations of urban planning / Grant Herbert in Cartography and Geographic Information Science, Vol 42 n° 1 (January 2015)
PermalinkModalités de représentation en 3D de données issues du SIG2D, pour la conception et la simulation / Olivier Jest (2015)
PermalinkModélisation 3D de la chapelle Saint-Laurent et de la place du Château (secteur 3) pour extraction de données archéologiques et visite virtuelle / Robin Bruna (2015)
PermalinkVisualisation of spread of Chalara ash dieback for raising public awareness and responsible woodland access / Chen Wang (2015)
PermalinkFrom raw data to meaningful information: A representational approach to cadastral databases in relation to urban planning / Francecs Valls-Dalmau in Future internet, vol 6 n° 4 (December 2014)
PermalinkUtilisation et intérêts des drones dans un cabinet de géomètres-experts, Archimed-GE / Nicolas Fehrenbach in XYZ, n° 141 (décembre 2014 - février 2015)
PermalinkVisual Acceptance of Library-Generated CityGML LOD3 Building Models / Ryan Garnett in Cartographica, vol 49 n° 4 (December 2014)
PermalinkUtilisation de la 3D à Metz-Métropole (3) : de réelles perspectives de valorisation de la 3D / Thomas Dalstein in Géomatique expert, n° 101 (novembre - décembre 2014)
PermalinkPermalinkDéveloppement et exploitation d'un produit de type "image solide". Application à l'analyse géostructurale des ouvrages rocheux de la SNCF / Antoine Gozé in XYZ, n° 140 (septembre - novembre 2014)
PermalinkColour contrast in cartographic works using the principles of Johannes Itten / Jan D. Bláha in Cartographic journal (the), vol 51 n° 3 (August 2014)
PermalinkPrinciples and terminology of true-3D geovisualisation / Claudia Knust in Cartographic journal (the), vol 51 n° 3 (August 2014)
PermalinkScalable multi-platform distribution of spatial 3D contents / Jan Klimke in International journal of 3-D information modeling, vol 3 n° 3 (July- September 2014)
PermalinkPermalinkExplorer le MOS grâce à la 3D / Laurie Gobled in Cahiers de l'Institut d'aménagement et d'urbanisme de la région Île-de-France, n° 169 (juin 2014)
PermalinkThree dimensional volunteered geographic information: A prototype of a social virtual globe / Maria Antonia Brovelli in International journal of 3-D information modeling, vol 3 n° 2 (April - June 2014)
PermalinkColorisation de nuages de points 3D par recalage dense d’images numériques / Nathalie Crombez in Traitement du signal, vol 31 n° 1-2 (2014-1-2)
PermalinkCombining Geo-SOM and hierarchical clustering to explore geospatial data / Chen-Chieh Feng in Transactions in GIS, vol 18 n° 1 (February 2014)
PermalinkPermalinkEstimation de la biomasse aérienne à partir de données lidar aéroporté / António Ferraz in Revue Française de Photogrammétrie et de Télédétection, n° 205 (Janvier 2014)
PermalinkPermalinkPermalinkProceedings of the 9th 3D GeoInfo Conference 2014, 11-13 November 2014, Dubai / Martin Breunig (2014)
PermalinkImage-based rendering of LOD1 3D city models for traffic-augmented immersive street-view navigation / Mathieu Brédif in ISPRS Annals of the Photogrammetry, Remote Sensing and Spatial Information Sciences, II-3 W3 (November 2013)
PermalinkPermalinkOut-of-core GPU-based change detection in massive 3D point clouds / Rico Richter in Transactions in GIS, vol 17 n° 5 (October 2013)
PermalinkUsing virtual reality and percolation theory to visualize fluid flow in porous media / Carlos Magno De Lima in Geoinformatica, vol 17 n° 4 (October 2013)
PermalinkVertical colour maps – A data-independent alternative to floor-plan maps / Alexander Salveson Nossum in Cartographica, vol 48 n° 3 (October 2013)
PermalinkZ-axis based visualization of map elements - cartographic experiences with 3D monitors using lenticular foil technology / Kai Bröhmer in Cartographic journal (the), vol 50 n° 3 (August 2013)
PermalinkExtraction de palettes de couleurs pour l'aide à la conception cartographique / Sidonie Christophe in Technique et science informatiques, TSI : Revue des Sciences et Technologies de l'Information, RSTI, vol 32 n° 3-4 (2013)
PermalinkInteraktive 3D-Landschaftsvisualisierung mittels Computer-games / Michael Mächler in Géomatique suisse, vol 111 n° 6 (juin 2013)
PermalinkRéflectométrie GNSS : modélisation des trajets des signaux réfléchis à la surface de la mer / Nicolas Roussel in XYZ, n° 135 (juin - août 2013)
PermalinkPermalinkToward an immersive 3D virtual BoK exploratorium: A proof of concept / Michael Demers in Transactions in GIS, vol 17 n° 3 (June 2013)
Permalinkvol 40 n° 3 - June 2013 - Selected Papers from ICC 2013: International Cartographic conference, Dresden, Germany, 25-30 august 2013 (Bulletin de Cartography and Geographic Information Science) / Michael Leitner
PermalinkWind farms: GIS-based visual impact assessment and visualization tools / Pilar Chias in Cartography and Geographic Information Science, vol 40 n° 3 (June 2013)
PermalinkVille numérique et maquettes 3D (Bulletin de Le moniteur des travaux publics et du bâtiment) / Philippe Thébaud
PermalinkVirtual worlds for photogrammetric image-based simulation and learning / Eduardo J. Piatti in Photogrammetric record, vol 28 n° 141 (March - May 2013)
PermalinkAdvances In Knowledge Discovery and Management, ch.. Ontology-based formal specifications for user-friendly geospatial data discovery / Ammar Mechouche (2013)
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PermalinkPermalinkPermalinkRéalisation d’une application dédiée à l’inspection des tunnels au sein du logiciel 3DReshaper / Jennifer Ludwig (2013)
PermalinkA 3-d laser scanning system and scan data processing method for the monitoring of tunnel deformations / K. Chmelina in Journal of applied geodesy, vol 6 n° 3-4 (November 2012)
PermalinkA photogrammetric technique for acquiring accurate head surfaces of newborn infants for optical tomography under clinical conditions / M. Abreu De Souza in Photogrammetric record, vol 27 n° 139 (September - November 2012)
PermalinkVisualisation 3D de terrain texturé : préservation au niveau du pixel des qualités géométriques et colorimétriques, une méthode temps réel, innovante et simple / T.V. Lê in Revue internationale de géomatique, vol 22 n° 3 (septembre - novembre 2012)
PermalinkMultidirectional visibility index for analytical shading enhancement / T. Podobnikar in Cartographic journal (the), vol 49 n° 3 (August 2012)
Permalink3D visualization of urban data based on CityGML with WebGL / Gilles Gesquière in International journal of 3-D information modeling, vol 1 n° 3 (July - September 2012)
PermalinkA hybrid system of expanding 2D GIS into 3D space / L. Yu in Cartography and Geographic Information Science, vol 39 n° 3 (July 2012)
PermalinkSkyline : La modélisation 3D n'a pas fini de progresser / Françoise de Blomac in SIG la lettre, n° 138 (juin 2012)
PermalinkDes données 3D pour les architectes, urbanistes et paysagistes sur le Canton de Genève / C. Minery in Géomatique suisse, vol 110 n° 5 (01/05/2012)
PermalinkPermalinkExploitation visuelle de trajectoires de grands animaux / Elodie Buard in Cartes & Géomatique, n° 211 (mars 2012)
PermalinkPermalinkPermalinkPermalinkLidar online: Analysing earthquake damage / R. Torro in GIM international, vol 25 n° 11 (November 2011)
PermalinkAt the crossroads of geovisualization: How the GeoWeb changes the way of mapping the world / F. Fischer in Geoinformatics, vol 14 n° 7 (01/10/2011)
PermalinkDes données 3D pour les architectes, urbanistes et paysagistes du canton de Genève / C. Minery in Géomatique expert, n° 82 (01/09/2011)
PermalinkLa fabuleuse histoire de la Tête de Maori de Rouen et sa numérisation / S. Varea in XYZ, n° 127 (juin - août 2011)
PermalinkOnline visualization of 3D city model using CityGML and X3DOM / B. Mao in Cartographica, vol 46 n° 2 (June 2011)
PermalinkHow many 3D city models are there? A typological try / M. Jahnke in Cartographic journal (the), vol 48 n° 2 (May 2011)
PermalinkWeka-STPM: a software architecture and prototype for semantic trajectory data mining and visualization / V. Bogorny in Transactions in GIS, vol 15 n° 2 (April 2011)
PermalinkPermalinkPermalinkReaching a compromise between contextual constraints and cartographic rules : application to sustainable maps / Charlotte Hoarau in Cartography and Geographic Information Science, Vol 38 n° 2 (March 2011)
PermalinkLa charte d'éthique de la 3D : petit bilan onze mois après son lancement / Hervé Halbout in Géomatique expert, n° 78 (01/01/2011)
PermalinkPermalinkPermalinkMaking photogrammetry efficient: SimActive's Correlator3D software / P. Simard in Geoinformatics, vol 13 n° 7 (01/10/2010)
PermalinkVisualization of attributed hierarchical structures in a spatiotemporal context / S. Hadlak in International journal of geographical information science IJGIS, vol 24 n° 10 (october 2010)
PermalinkPermalinkUtilisation de données laser à haute résolution pour le suivi d'un objet dynamique : expérimentation sur une nappe caillouteuse torrentielle (La Lampe, Vercors) / L. Astrade in Revue Française de Photogrammétrie et de Télédétection, n° 192 (Septembre 2010)
PermalinkInteractive design of 3D maps with progressive projection / H. Jenny in Cartographic journal (the), vol 47 n° 3 (August 2010)
PermalinkPermalinkPermalinkvol 65 n° 3 - May - June 2010 - Visualisation and exploration of geospatial data (Bulletin de ISPRS Journal of photogrammetry and remote sensing) / J. Schiewe
PermalinkComment les "pros" s'intéressent aux globes virtuels grand public ? / Françoise de Blomac in SIG la lettre, n° 115 (mars 2010)
PermalinkFME 2010 : Taking spatial ETL [Extract-Transform-Load] technology to new heights / F. Artes in Geoinformatics, vol 13 n° 2 (01/03/2010)
PermalinkThe imagina 2010 conference report / Roger Longhorn in GEO: Geoconnexion international, vol 9 n° 3 (march 2010)
PermalinkDévelopper sa maquette 3D territoriale : quelle méthode pour quel résultat ? / Vincent Habchi in Géomatique expert, n° 73 (01/02/2010)
PermalinkYOBILIDAR: 3D Spatial indexing for Lidar DATA / D. Laefer in GIM international, vol 24 n° 2 (February 2010)
Permalink5th International Conference on 3D GeoInformation, 3-4 November 2010, Berlin, Germany / Thomas H. Kolbe (2010)
PermalinkPermalinkPhotogrammetric computer vision and image analysis, ISPRS Commission 3 symposium, Saint-Mandé, 1-3 septembre 2010, 1. Volume 1 [Papers accepted on the basis of peer-reviewed full manuscripts] / Marc Pierrot-Deseilligny (2010)
PermalinkPermalinkDe la modélisation tridimensionnelle au SIG 3D / Mirko Peripimeno in Géomatique expert, n° 72 (01/12/2009)
PermalinkPermalinkPermalinkModelling the erectheion: extracting information from very large datasets / J. Beraldin in GIM international, vol 23 n° 11 (November 2009)
PermalinkPermalinkUne maquette temps réel sur la baie du Mont St Michel : mariage du SIG et de la 3D au service du grand paysage / Hélène Durand in Géomatique expert, n° 70 (01/09/2009)
PermalinkModeling uncertainty of moving objects on road networks via space- time prims / Bart Kuijpers in International journal of geographical information science IJGIS, vol 23 n°9-10 (september 2009)
PermalinkScannérisation laser et photogrammétrie : deux techniques complémentaires pour l'étude des risques naturels par télédétection rapprochée en haute montagne / T. Villemin in XYZ, n° 120 (septembre - novembre 2009)
PermalinkFullanalyze : a research tool for handling, processing and analyzing full-waveform Lidar data / Adrien Chauve (12/07/2009)
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Permalinkvol 36 n° 3 - July 2009 - Workshop on geospatial visual analytics, [actes], Parkcity, 23 september 2008 (Bulletin de Cartography and Geographic Information Science) / Cartography and geographic information society
PermalinkA hybrid measurement approach for close-range photogrammetry / Clive Simpson Fraser in ISPRS Journal of photogrammetry and remote sensing, vol 64 n° 3 (May - June 2009)
Permalink3D picture navigation is on the move / 3dvu in GEO: Geoconnexion international, vol 8 n° 3 (march 2009)
PermalinkDigital terrain modelling with 3D visualisation / F. Muyoba in GEO: Geoconnexion international, vol 8 n° 3 (march 2009)
PermalinkDynamic hybrid terrain representation based on convexity limits identification / M. Bóo in International journal of geographical information science IJGIS, vol 23 n°3-4 (march - april 2009)
PermalinkLa géovisualisation interactive basée sur le SIG et le GEOVRML : une approche pour l'analyse des morphostructures, le web et la visualisation géospatiale 3D / Tarek Slama in XYZ, n° 118 (mars - mai 2009)
PermalinkPermalinkAviation légère de l'armée de terre : des SIG au service des pilotes d'hélicoptères de combat / Philippe Lépinard in Géomatique expert, n° 67 (01/02/2009)
PermalinkPermalinkPermalinkPermalinkTerra Magna-3d and urban GIS research / Issam Tannous in GEO: Geoconnexion international, vol 8 n° 1 (january 2009)
PermalinkExtending marine GIS capabilities: 3D representation of fish aggregations using Delaunay tetrahedralisation and Alpha shapes / V. Carette in Geomatica, vol 62 n° 4 (December 2008)
PermalinkLa sémantique de scènes 3D : une approche sémantique pour l'adaptation et la réutilisation de scènes 3D / I. Bilasco in Le monde des cartes, n° 198 (décembre 2008)
PermalinkA Polygonal approach for automation in extraction of serial modular roofs / Y. Avrahami in Photogrammetric Engineering & Remote Sensing, PERS, vol 74 n° 11 (November 2008)
PermalinkResolution control for balancing overview and detail in multivariate spatial analysis / J. Chen in Cartographic journal (the), vol 45 n° 4 (November 2008)
PermalinkFrom named place to naming event: creating gazetteers for history / R. Mostern in International journal of geographical information science IJGIS, vol 22 n° 10 (october 2008)
PermalinkPermalinkDe la maquette 3D au SIG 3D pour la gestion du patrimoine archéologique / M. Koehl in Géomatique expert, n° 64 (01/09/2008)
PermalinkNext generation mobile Laser mapping technology / A. Denniss in Geoinformatics, vol 11 n° 6 (01/09/2008)
PermalinkProposed cartographic design principles for 3D maps: a contribution to an extended cartographic theory / C. Häberling in Cartographica, vol 43 n° 3 (September 2008)
PermalinkCartographic generalisation of lines based on a B-spline snake model / E. Guilbert in International journal of geographical information science IJGIS, vol 22 n° 8-9 (august 2008)
PermalinkLa maquette virtuelle 3D au service de l'aménagement du territoire / S. Gourgout in XYZ, n° 115 (juin - août 2008)
PermalinkPermalinkvol 35 n° 2 - April 2008 - Modeling and visualisation for spatial decision support (Bulletin de Cartography and Geographic Information Science) / Cartography and geographic information society
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