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Proceedings, XXth congress (Part 8)

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fullscreen: Proceedings, XXth congress (Part 8)

Multivolume work

Persistent identifier:
1663674213
Title:
Proceedings, XXth congress
Sub title:
Istanbul, 12 - 23 July 2004
Year of publication:
2004
Place of publication:
Istanbul
Publisher of the original:
[Verlag nicht ermittelbar]
Identifier (digital):
1663674213
Language:
English
Additional Notes:
Erscheinungsdatum des Originals ist aus dem Copyrightjahr ermittelt.
Auch bezeichnet als XXth International Congress for Photogrammetry and Remote Sensing
Editor:
Altan, M. Orhan
Corporations:
International Society for Photogrammetry and Remote Sensing, Congress, 20., 2004, Istanbul
International Society for Photogrammetry and Remote Sensing, Commission Primary Data Acquisition
Adapter:
International Society for Photogrammetry and Remote Sensing, Congress, 20., 2004, Istanbul
International Society for Photogrammetry and Remote Sensing, Commission Primary Data Acquisition
Founder of work:
International Society for Photogrammetry and Remote Sensing, Congress, 20., 2004, Istanbul
International Society for Photogrammetry and Remote Sensing, Commission Primary Data Acquisition
Other corporate:
International Society for Photogrammetry and Remote Sensing, Congress, 20., 2004, Istanbul
International Society for Photogrammetry and Remote Sensing, Commission Primary Data Acquisition
Document type:
Multivolume work

Volume

Persistent identifier:
166368779X
Title:
Proceedings, XXth congress
Scope:
IV, 226 Seiten
Year of publication:
2004
Place of publication:
Istanbul
Publisher of the original:
[Verlag nicht ermittelbar]
Identifier (digital):
166368779X
Illustration:
Illustrationen, Diagramme
Signature of the source:
ZS 312(35,B8)
Language:
English
Additional Notes:
Erscheinungsdatum des Originals ist aus dem Copyrightjahr ermittelt.
Usage licence:
Attribution 4.0 International (CC BY 4.0)
Editor:
Altan, M. Orhan
Corporations:
International Society for Photogrammetry and Remote Sensing, Congress, 20., 2004, Istanbul
International Society for Photogrammetry and Remote Sensing
Adapter:
International Society for Photogrammetry and Remote Sensing, Congress, 20., 2004, Istanbul
International Society for Photogrammetry and Remote Sensing
Founder of work:
International Society for Photogrammetry and Remote Sensing, Congress, 20., 2004, Istanbul
International Society for Photogrammetry and Remote Sensing
Other corporate:
International Society for Photogrammetry and Remote Sensing, Congress, 20., 2004, Istanbul
International Society for Photogrammetry and Remote Sensing
Publisher of the digital copy:
Technische Informationsbibliothek Hannover
Place of publication of the digital copy:
Hannover
Year of publication of the original:
2019
Document type:
Volume
Collection:
Earth sciences

Chapter

Title:
SENSOR WEB AND GEOSWIFT - AN OPEN GEOSPATIAL SENSING SERVICE S. H. L. Liang, V. Tao, A. Croitoru
Document type:
Multivolume work
Structure type:
Chapter

Contents

Table of contents

  • Proceedings, XXth congress
  • Proceedings, XXth congress (Part 8)
  • Cover
  • Title page
  • ISPRS Council 2000 - 2004
  • Technical Commission Presidents 2000 - 2004
  • Congress Organising Committee
  • TABLE OF CONTENTS
  • MULTI-TRIANGULATION TO GET GCP FOR OLD UNPREMARKED AERIAL PHOTOGRAPHS Fahmi Amhar
  • PERFORMANCE EVALUATION OF CARD SIZE DIGITAL CAMERA FOR PHOTOGRAMMETRIC APPLICATIONS Yuji Ejima, Hirofumi Chikatsu
  • AN ALGORITHM FOR BUILDING FULL TOPOLOGY Chaoying HE, Jie JIANG, Gang HAN, Jun CHEN
  • PHOTOREALISTIC BUILDING MODELING AND VISUALIZATION IN 3-D GEOSPATIAL INFORMATION SYSTEM Yonghak Song, Jie Shan
  • PREPARATION OF ORTHOPHOTOS FROM IKONOS IMAGERY FOR CADASTRE BASE MAPPING OF NAKHCEVAN AUTONOMOUS REPUBLIC TERRITORY Emil.R. Bayramov, Rafael. V. Bayramov
  • VIRTUAL ENVIRONMENTS IN PLANNING AFFAIRS Getting closer to geographic data, a better way! Mohammed Abdul Mannan, Bogdahn Juergen.
  • QUALITY ASSESSMENT OF GLOBAL MODIS LAI PRODUCT FOR THE REGIONAL SCALE APPLICATIONS Sun-Hwa Kim and Kyu-Sung Lee
  • FOREST FIRE RISK ZONE MAPPING FROM SATELLITE IMAGERY AND GIS A CASE STUDY Esra Erten, Vedat Kurgun, Nebiye Musaoglu
  • BRDF CORRECTION ON AVHRR IMAGERY FOR SPAIN H. Heisig
  • A MULTI-SCALE SEGMENTATION METHOD FOR REMOTELY SENSED IMAGES BASED ON GRANULOMETRY Z. Y. Hang, X. L. Chen, Y. S. Li, C. Q. Chen
  • IMPROVEMENT OF IMAGE CLASSIFICATION WITH THE INTEGRATION OF TOPOGRAPHICAL DATA Deniz Gerçek
  • THE CURVELET TRANSFORM FOR IMAGE FUSION Myungjin Choi, Rae Young Kim, Moon-Gyu Kim
  • THE DEVELOPMENT OF A REAL-TIME FOREST FIRE MONITORING AND MANAGEMENT SYSTEM L. Trevis, Dr. N. El-Sheimy
  • INTEGRATION OF GIS, GPS AND GSM FOR THE QINGHAI-TIBET RAILWAY INFORMATION MANAGEMENT PLANNING Bin Wang, Qingchao Wei, Qulin Tan, Shonglin Yang, Baigen Cai
  • A WEB-BASED APPLICATION FOR REAL-TIME GIS O. Ozdilek, D. Z. Seker
  • SENSOR WEB AND GEOSWIFT - AN OPEN GEOSPATIAL SENSING SERVICE S. H. L. Liang, V. Tao, A. Croitoru
  • USAGE OF DIFFERENT SPECTRAL BANDS IN AGRICULTURAL ENVIRONMENTAL PROTECTION P. Burai, J. Tamas, Cs. Lenart, I. Pechmann
  • WEB BASED INFORMATION SYSTEM FOR TOURISM RESORTS; A CASE STUDY FOR SIDE/ MANAVGAT E. Duran, D. Z. Seker, M. Shrestha
  • CONTRIBUTION TO THE SETTING UP OF A GEOGRAPHICAL INFORMATION SYSTEM FOR THE LOCAL MANAGEMENT Technical aspect of the Systemic approach B. Chorfa, L. BenMohamed
  • RECONSTRUCTION OF BUILDINGS FROM A SINGLE UAV IMAGE WANG Jizhou, Lin Zongjian, LI Chengming
  • VISUAL AND STATISTICAL QUALITY ASSESSMENT AND IMPROVEMENT OF REMOTELY SENSED IMAGES S. Mohammad Shahrokhy
  • SIMULATE APPROACH FOR SEVERAL REMOTE SENSING IMAGES’ POSITIONING WITH GPS DATA AND FEW GCPS YAN Qin, QIU Zhicheng, CHENG Chunquan, WANG Yali
  • COMPARISON OF OBJECT ORIENTED IMAGE ANALYSIS AND MANUAL DIGITIZING FOR FEATURE EXTRACTION H. Sahin, H. Topan, S. Karakis, A. M. Marangoz
  • APPROACH OF THE HUNGARIAN GEOID SURFACE WITH SEQUENCE OF NEURAL NETWORKS P. Zaletnyik, L. Völgyesi, B. Paláncz
  • LOESS SOILS EROSION MULTITEMPORAL MEASURMENT USING PHOTOGRAMMETRY AND GEOINFORMATION METHODS Jaroslaw Januszewski
  • EDGE DETECTION IN GEOLOGIC FORMATION EXTRACTION: CLOSE RANGE AND REMOTE SENSING CASE STUDIES U. G. Sefercik, O. E. Gülegen
  • EARLY RESULTS FROM AN IMAGING INTERFEROMETER PROTOTYPE OPERATING IN THE SAGNAC CONFIGURATION Paolo Marcoionni
  • CLOSE-RANGE PHOTOGRAMMETRY WITH AMATEUR CAMERA Dimitar Jechev
  • INTEGRATED DEM AND PAN-SHARPENED SPOT-4 IMAGE IN URBAN STUDIES G. Doxani, A. Stamou
  • DEVELOPING A WEB-BASED GIS APPLICATION FOR EARTHQUAKE INFORMATION A. Garagon Dogru, T. Selcuk, H. Ozener, O. Gurkan, G. Toz
  • EFFICIENT CALIBRATION OF AMATEUR DIGITAL CAMERA AND ORIENTATION FOR PHOTOGRAMMETRIC APPLICATIONS Kazuya AOYAMA, Hirofumi CHIKATSU
  • 3D MODELING AND REPRESENTATION OF “IDEAL CITY” PAINTED BY PIERO DELLA FRANCESCA Tomomasa SAEGUSA, Hirofumi CHIKATSU
  • INTERPRETATION OF TROPICAL VEGETATION USING LANDSAT ETM+IMAGERY M. M. Rahman, E. Csaplovics, B. Koch, M. Köhl
  • COMBINATION OF SATELLITE IMAGE PAN IKONOS - 2 WITH GPS IN CADASTRAL APPLICATIONS K. Christodoulou, M. Tsakiri-Strati
  • GIS BASED NATURAL DISASTER MAPPING: A CASE STUDY O. Avsar, Z. Duran, D. Z. Seker, M. Hisir, M. Shrestha
  • INVESTIGATION OF TIME-DEPENDENT CHANGES OF FILYOS RIVER AND ITS DELTA IN THE BLACK SEA COASTAL ZONE BY TEMPORAL GIS I. Büyüksalih, S. Öncü, H. Akcin
  • CREATING FOREST INFORMATION SYSTEM: A CASE STUDY FOR ISTANBUL KURTKEMERI FOREST ADMINISTRATION F. Kurtcebe
  • ANALYSIS OF CHANGES IN VEGETATION BIOMASS USING MULTITEMPORAL AND MULTISENSOR SATELLITE DATA A. Akkartal, O. Türüdü, and F. S. Erbek
  • URBAN ORTHOIMAGE ANALYSIS GENERATED FROM IKONOS DATA S. Siachalou
  • An Adaptive Content-Based Localized Watermarking Algorithm for Remote Sensing Image Xianmin Wang, Zequn Guan, Chenhan Wu
  • APPLICATION OF ETM+ DATA FOR ESTIMATING RANGELANDS COVER PERCENTAGE (CASE STUDY: CHAMESTAN AREA, IRAN) Seyed Zeynalabedin Hosseini, Sayed Jamaleddin Khajeddin, Hossein Azarnivand
  • DESIGN SPATIAL CACHE FOR WEBGIS LUO Yingwei, WANG Xiaolin and XU Zhuoqun
  • AUTOMATIC INTERIOR ORIENTATION OF KFA-1000 SPACE PHOTO Mehdi Ravanbakhsh, Saeid Sadeghian
  • PREDICTION OF SHORLINE CHANGE BY USING SATELLITE AERIAL IMAGERY A. A. Elkoushy, E. R. A. Tolba
  • Integrated High Resolution Satellite Image, GPS and Cartographic Data in Urban Studies. Municipality of Thessaloniki. N. Bussios, Y. Tsolakidis, M. Tsakiri-Strati, O. Goergoula
  • EFFICIENT LINE MATCHING BY IMAGE SEQUENTIAL ANALYSIS FOR URBAN AREA MODELLING Y. Kunii, H. Chikatsu
  • KEYWORDS INDEX
  • Cover

Full text

  
SENSOR WEB AND GEOSWIFT - AN OPEN GEOSPATIAL SENSING SERVICE 
S.H.L. Liang, V. Tao, A. Croitoru 
GeolCT Lab, Department of Earth and Space Science and Engineering, 4700 Keele Street, Toronto, M3J 1P3 
CANADA - (liang, tao, arie)@yorku.ca 
YF TS 4 
KEY WORDS: Sensor, GIS, Web-based, Fusion, Monitoring, Environment, Internet/Web 
ABSTRACT: 
Sensor Web is a Web-centric, open, interconnected, intelligent and dynamic network of sensors that performs extensive spatial- 
temporal monitoring of our environment through coordinated work between multiple types and numbers of sensor networks. With 
the presence of cheaper, miniature and smart sensors; high-resolution remote sensing sensors; abundant fast and ubiquitous 
computing devices; wireless and mobile communication networks; and autonomous and intelligent software agents, the Sensor Web 
has become a clear technological trend in geospatial data collection, fusion and distribution. 
The concept of Sensor Web is new and exciting. Research in Sensor Web is still in its infant stage and several technical issues still 
remain to be resolved. One of the challenges is to fast deploy intelligent and coordinated sensors into field, perform on-demand 
sensing, and timely distribute observations through an open distributed GlService for informed decision making. At GeoICT Lab of 
York University, We are developing an open geospatial information infrastructure for Sensor Web — GeoSWIFT (Geospatial Sensor 
Web Information Fusion Technology), which serves as a gateway that integrates and fuses observations from heterogeneous spatial 
enabled sensors. We are also developing a Sensor Web which composed by a group of matchbox-sized wireless sensor nodes and 
can be fast deployed by simply spreading those tiny nodes in the field. By integrating the Sensor Web and GeoSWIFT, the goal of 
fast on-demand sensing for better informed decision can be achieved. This paper first reviews Sensor Web technology and its 
implication for GIS. Then we introduce the components and architecture of GeoICT Lab's developing Sensor Web. | GeoSWIFT, 
which is built on the OpenGIS standards, XML messaging technology, and its prototype are described in this paper. The examples 
of this integrated Sensor Web and GeoSWIFT in real-time weather information, earthquake information system, and traffic web 
cams are also presented in this paper. 
1. SENSOR WEB Business | Week(Gross, 1999) provided a vivid and 
understandable description of the sensor web: 
1.1 What is the Sensor Web? 
“In the next century, planet Earth will don an electronic skin. It 
The term ‘sensor web’ (SW) was first proposed by the NASA wil] use the Internet as a scaffold to support and transmit 
Sensor Web Applied Research Planning Group. In 2001, sensations, The skin is already being stitched together. It 
NASA provided a definition of a Sensor Web as follows (Delin consists of millions of embedded electronic measuring devices: 
and Jackson, 2001): thermostats, pressure gauges, pollution detectors, cameras, 
microphones, glucose sensors, EKGs, electroencephalographs. 
“A Sensor Web is a system of intra-communicating spatially ^ pese will probe and monitor cities and endangered species, the 
distributed sensor pods that can be deployed to monitor and atmosphere, our ships, highways and fleets of trucks, our 
explore new environments." conversations, our bodies — even our dreams." 
This definition by NASA has limited the sensor web to a small 1.2 Characteristics of Sensor Web 
scope in that is focuses on using only certain sensing 
instruments (sensor pods). The DoD also has a similar initiative 1.2.1 Interoperable 
called ‘Smart Sensor Web’, however, this focuses on tactical ^ The Sensor Web is achieved by connecting the distributed and 
battlefield operations. It is argued here that the definition of the heterogeneous in-situ and remote sensors by open, 
sensor web should take on a broader scope and vision, and that interconnected networks to an information centre that stores, 
the applications should not be limited to environmental disseminates, exchanges, manages, displays and analyzes the 
exploration or defense purposes. As sensing technologies, sensing information. Interoperability is the key to integrating 
network technologies, and computing technologies advance, all of these components and to achieving the vision of the 
similar concepts or definitions can also be found in different sensor web. 
research communities using different terminologies. Those 
terminologies, such as pervasive computing(Estrin et al., 2002), 1.2.2 Intelligent 
wireless sensor networks(Correal and Patwari, 2001), embedded ^ As computing technologies advance, computing resources have 
sensing, distributed sensor networks, scalable information ^ become seamlessly embedded into our daily lives. Intelligence 
networks and next generation remote sensing system, partially ^ can reside in all components of the sensor web by utilizing the 
touch on similar concepts. At the GeoICT Lab, we seek to ubiquitous processing capability. Another level of intelligence 
broaden this scope and include a wide range of sensors and of the sensor web will stem from connectivity among sensors; a 
applications into the definition of the sensor web. We found ^ concept that is analogous to human intelligence stemming from 
the connection of neurons in the brain.(Koch and Laurent, 1999) 
80 
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