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WEB APPLICATIONS FOR SURVEYORS Milan Kocáb, Milan Talich

Research Institute of Geodesy, Topography and Cartography , 250 66 Zdiby 98, tel: +420 284 890 515, e-mail: Milan.Talich@vugtk.cz. WEB APPLICATIONS FOR SURVEYORS Milan Kocáb, Milan Talich. GEOS 2008, Prague 27. – 28. February, 2008. Paper content s :.

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WEB APPLICATIONS FOR SURVEYORS Milan Kocáb, Milan Talich

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  1. Research Institute of Geodesy, Topography and Cartography,250 66 Zdiby 98, tel: +420 284 890 515, e-mail: Milan.Talich@vugtk.cz WEB APPLICATIONS FOR SURVEYORSMilan Kocáb, Milan Talich GEOS 2008, Prague 27. – 28. February, 2008

  2. Paper contents: • short description of general principles and advantages of applied technologies of web services and XML applications • Two examples of web applications for surveyors: • description of XML web applicationto geodynamic analysis of deformationswith examples of using • web application for survey sketch processing • this way the paper reflects a decline of understandingweb as a medium offering information to be the tool rendering services and applications

  3. Basis of Applied technologies - XML: • As basis is the XML (eXtensible Markup Language) interface to services and applications • XML is a markuplanguage, similar to the HTML • Self-describing, platform independent, text format • Possible simple validation and data correctness • Possible transfer of binary data, too • Expandable and possible to define own signs and structure • => XML is very suitable format to data storing and exchange

  4. Principles - web services and applications: • Web application enables interaction between man and machine, web service enables interaction machine - machine • Web services represent basic building blocks to web applications and distributed data and information processing • Using of standardized interface (XML) to services and applications allows creation of new platformindependent applications, which utilizes such services • Such services and applications may be multiplied => a development towards using distributed services and data from more servers simultaneously • In GIS area WMS, WFS,..., WPS (Web Map Service, …) are used in accordance toOpen Geospatial Consortium (OGC - http://www.opengeospatial.org/) • => GIS data must not be on own PC

  5. Server1 – topographic base Client Server2 – thematic base

  6. Main advantages of XML web applications: • User does not need his own softwareto less frequent or complicated calculations • User must not care aboutsoftware updatingevoked by technology advancement or changes of calculation (technological) procedures and regulations • On-line made calculationsguaranteesecuringuniform calculations and proceduresof given applications (regulations), results from different input data may be compared • Itis possible to document calculation steps madeandmethods on serveras well as input and output values • It is possible to chargee.g., by microfees in commercial cases and applications and services may be used • Interconnection of applications from different producers is possible including their cascading a simultaneous using of different XML web services=> whole infrastructure may be built and complicated problems solved by distribution

  7. 1st example: XML web application to geodynamic analysis of deformations: • Application to geodynamic analysis of deformations made on-lineand utilizing simultaneously WMS web services (www.vugtk.cz/~deformace) • Application goes from the desktop version which we used 20 years ago and is based on continuum mechanics • As input to the application: coordinates of given points, their displacements and numbers stored at client and some other information as required • As output: • Values of interpolated displacements in quadratic network • Deformation field values in the same quadratic network (strain tensors) • Graphic representation of displacement field and map deformation • Possible insertion of topographic base to map by WMS (SMO 5, UHUL, NASA – Landsat a MODIS, DEMIS) • Export to the KML format for GoogleEarth • Input and output values are in the XML format (GML, SVG, KML)

  8. www.vugtk.cz/~deformace Home Page

  9. Characteristics of Deformation application: XML format • Corresponding to XML definition and other international recommendations of W3C consortium • Modular system • Input possible of one or two sets User interface www • Application properties • Detailed description of inputs and outputs • Examples of using Help • standard Windows Help format .HLP, • Register • Searching • Coordinate systems • UTM • WGS – fi, lambda, or X,Y,Z • S-JTSK (Křovák) • S-42 (Gauss)

  10. INPUT DATA - XML FORMAT a. c. b. • Data • DTD • Description • Input form d.

  11. Tools used by application: • Own applications consisting of a script series in PHP, HTML, JavaScript, Java languages and CGI scrips in Fortranu 77. • Mapserver - freeware (Open Source) map server from University of Minesotta, USA and MapScript library enabling access to Mapserver functions from many script languages (PHP, Java, Python, Perl, …) http://mapserver.gis.umn.edu • HSMAP is a map application in PHP language using theMapScript library. It offers user media to basic work with a map (enlarging/reducing, displacement, history of cuts, switching on/out of layers, interrogating, searching, scale setting…) http://www.bnhelp.cz • Application uses WMS to representation of background maps from TopoHelp ČR and IDC - ÚHÚL OPRL servers, other servers may be added

  12. Exaples of use in practice:

  13. Conclusions to the 1st example: • presented application demonstrates XML technology and standards to form web computing applications with simultaneous use of XML web map services • this concrete application enables that any surveyor may perform even more complicated work such as deformation analysis without own special software

  14. 2nd example: Web Application for Survey Sketch Processing interactive web technology with web application and „Javascipt“ exploitation on the client side asynchronous XML based client-server communication no need to reload and refresh whole web page after each operation (as in static HTML) full-value GIS application with its own internal logic for survey sketch processing

  15. OBR

  16. Operation Sequence for the Application a) Project creation and background import in VFK exchange format from ISKN to the database including TXT file of list of coordinates for measured points for creation of the survey sketch http://www.geometrplan.cz b) Visualisation of VFK graphic data and list of coordinates of points in the editor that is part of the web application c) Drawing of new (changed) state in the cadastral map and saving of the change data with web editor into distant database on server. Contains an error protocol for case of error.

  17. Survey Sketch Drawing - Illustration

  18. Kresba na měřené body

  19. Operating the Application d) Defining of relationships between original and new parcels and completion of other attributes to parcels (e.g. BPEJ, land-use....) e) data export of survey sketch to the database on the server, data conversion to VFK and take-over of the change batch for ISKN update

  20. Definition of Relationships and New State Dialogue “Vazby“-Relationshipshelps to define relationships between affected parcels of „old“ state and new created parcels.

  21. Parcels Attributes Completion • Dialogue „Atributy" helps to complete parcel information (editing of area, land-use and type of parcel, way of setting the area)

  22. Scale Setting Makes possible to prepare the design for print output of the form

  23. Next Development 1 Revision of the ISKN format in VFK, geodata standardisation for communication in wider spectra of users and orientation towards one of the XML metalanguage XML format (GML, LandXML or other XML) Web application would make possible to persons in charge to accept survey sketches including data recording and validation in new, faster and more flexible form

  24. Next Development 2 creation of new internet (web) service that will create a XML document that will be sent to an user. Service that can, on the base of XML documents exchange, communicate with other segments in the Internet environment and will, e.g., choose data for processing of survey sketch based on cadastral map and will choose data groups selection that are requested by the operator and it will send all the documentation all the documentation (sketches, calculations…) would be handed over in form of exchange format by the Internet

  25. Conclusions to the 2nd example: the new tool for providing of services and applications based on them presents a new trend in geodata processing, not only use of Internet as a medium for providing and visualisation of data web services with XML interface are platform and firmware independent

  26. Conclusions: the development leads up to exploitation of distributed services and databases that use such XML interfaces for access the future doubtless belongs to web applications (two were mentioned) that use mentioned standards-based services (WPS, WMS, WFS,…) Next examples from Czech Republic: services for cadastral maps browsing by Czech Office for Mapping, Surveying and Cadastre:http://wms.cuzk.cz/wms.asp, map server of Forest Management Institute:http://geoportal2.uhul.cz/ application to clasify satellite images on-line:http://212.158.128.86/projects/uhul/

  27. Research Institute of Geodesy, Topography and Cartography,250 66 Zdiby 98, tel: +420 284 890 515, e-mail: Milan.Talich@vugtk.cz Thank you for your attention Milan Talich & Milan Kocáb

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