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Proceedings ArticleDOI

Design of an efficient distributed GIS application

15 Oct 2003-Vol. 3, pp 1162-1166
TL;DR: The objective of this work is to provide models, methods, tools and frameworks for the development of open distributed geographical information systems and to apply them in at least one test case, to demonstrate and validate the usability and viability of the results.
Abstract: In distributed GIS (geographical information system), all locations that store data are networked together and queries gain their results from any number of locations. The queries, which can be both spatial, and a spatial can be fired from any location in the network and the result is obtained by combining disseminated information across various repositories of data [K. Buchler and L. McKee, 1996]. The proposed model of the distributed GIS will demonstrate many of the important user requirements, design concepts and relevant technologies for real world, remote archives and access capabilities and how these can be integrated into a multi-level user environment. This paper discusses the issues involved in implementing a distributed system that provides a computational infrastructure for the development of decision support and research applications requiring access to and manipulation of large geospatial data sets such as satellite imagery, from remote servers. We give an overview of some of the components of the prototype systems we have developed. The approach used here is particularly useful if the amount of data to be processed is very large (for example multiple channels of a satellite image) but the final result is relatively small (for example a processed satellite image of a localized area or perhaps just a few numbers such as average sea temperature or percentage cloud cover). This project integrates high performance computers and mass data stores to provide useful services to Web based clients for decision support applications including environmental analysis for agricultural planning and land management, analysis of satellite and photoreconnaissance images for defense command and control etc. The end users will thus be able to make the transition from traditional DSSs (decision support systems) based on manual processing of non electronic data such as maps to information age decision systems based on automated or semi automated processing of digital data from large online data archives. There is an emerging need for distributed GIS. The objective of this work is to provide models, methods, tools and frameworks for the development of open distributed geographical information systems and to apply them in at least one test case, to demonstrate and validate the usability and viability of the results. The commercial objective is to decrease the cost of geodata management and further increase the ROI (return on investment) of geodata collection and establishment. The approach is to apply the emerging reference model of open distributed processing standard in combination with existing distributed object technology in the application domain of distributed GIS. The results from this project will be a validation and demonstration of open distributed processing, based on distributed object technology, applied to GIS. The results will be used to increase the share of research and development projects in the area of GIS.
Citations
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Journal ArticleDOI

[...]

TL;DR: An overview of the emergence of S DSS, its architecture and applications, and discusses some of the enabling technologies and research challenges for future SDSS development and deployment are provided.
Abstract: Spatial Decision Support Systems (SDSS), which support spatial analysis and decision making, are currently receiving much attention. Research on SDSS originated from two distinct sources, namely, the GIS community and the DSS community. The synergy between these two research groups has lead to the adoption of state of the art technical solutions and the development of sophisticated SDSS that satisfy the needs of geographers and top-level decision makers. Recently, the Web has added a new dimension to SDSS and Web-based SDSS (WebSDSS) are being developed in a number of application domains. This article provides an overview of the emergence of SDSS, its architecture and applications, and discusses some of the enabling technologies and research challenges for future SDSS development and deployment.

57 citations


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Patent

[...]

22 Aug 2007
TL;DR: In this paper, the authors present a method and system for implementing a Geographic Information Systems (GIS) network, which includes selecting a data dictionary comprising at least one desired GIS feature type which was not originally intended for use by the mobile electronic device based upon the assigned membership of the mobile device to the workgroup.
Abstract: Embodiments of the present invention recite a method and system for implementing a Geographic Information Systems (GIS) network. In one embodiment, configuration data comprising a unique identification of a mobile electronic device and an assigned membership of the mobile electronic device to a workgroup is received. The method further comprises selecting a data dictionary comprising at least one desired GIS feature type which was not originally intended for use by the mobile electronic device based upon the assigned membership of the mobile electronic device to the workgroup. The method further comprises sending the data dictionary to the mobile electronic device via a wireless communication network.

43 citations

Patent

[...]

22 Aug 2007
TL;DR: In this article, the authors present a method and system for provisioning a Java-equipped cellular telephone with a GIS data collector application, which is uploaded onto a Java equipped cellular telephone.
Abstract: Embodiments of the present invention recite a method and system for provisioning a Java equipped cellular telephone. In one embodiment, a Geographic Information Systems (GIS) data collector application is uploaded onto a Java equipped cellular telephone for enabling the Java equipped cellular telephone to perform GIS data collection functions. The method further comprises uploading a data dictionary onto the Java equipped cellular telephone comprising at least one GIS feature type.

35 citations

Patent

[...]

22 Aug 2007
TL;DR: In this paper, a mobile electronic device that was not originally intended for use as a GIS data collector was used as a data dictionary forwarding device for data collection in a Geographic Information Systems (GIS) data collection network.
Abstract: Embodiments of the present invention recite a Geographic Information Systems (GIS) data collection network. In one embodiment, the present invention comprises a mobile electronic device that was not originally intended for use as a GIS data collector. The present invention further comprises a data dictionary forwarding device communicatively coupled with the mobile electronic device and a GIS data management component communicatively coupled with the data dictionary forwarding device for receiving GIS data collected by the mobile electronic device.

35 citations

Patent

[...]

22 Aug 2007
TL;DR: In this paper, the authors present a method for implementing Geographic Information Systems (GIS) data collection utilizing a legacy electronic device, which is not originally intended to be used as a GIS data recording device.
Abstract: Embodiments of the present invention recite a method for implementing Geographic Information Systems (GIS) data collection utilizing a legacy electronic device. In one embodiment, a GIS data collector application is installed upon a legacy electronic device which is not originally intended to be used as a GIS data recording device. The method further comprises selecting a data dictionary comprising at least one desired GIS feature type which was not originally intended for use by the legacy electronic device based upon an assigned membership of the legacy electronic device to a workgroup. The method further comprises sending the data dictionary to the legacy electronic device via a wireless communication network.

34 citations