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Metodyka i technologia budowy geoserwera tematycznego jako komponentu INSPIRE

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EN
Methodology and technology applied in development of thematic geoserver as a component of INSPIRE
Języki publikacji
PL
Abstrakty
PL
Obecnie w Polsce trwają wstępne prace nad budową polskiej części europejskiej infrastruktury informacji przestrzennej (ESDI) określonej w dyrektywie INSPIRE. Realizacja zadań wynikających z tej dyrektywy stawia polskie środowisko zajmujące się geoinformacją przed nowymi trudnymi do rozwiązania problemami zarówno organizacyjnymi jak i technologicznymi. Z tego względu autor podjął się prac badawczych o charakterze studialnym i eksperymentalnym w ramach trzyletniego projektu sfinansowanego przez MNiSW, którego zadaniem było opracowanie metodyki i technologii budowy geoserwera tematycznego z zakresu hydrogeologii, spełniającego wymagania specyfikacji i norm dotyczących geoinformacji i udostępniania jej w Internecie. W miarę postępu prac prowadzonych przez zespoły europejskie nad dokumentami określającymi szczegółowe wymagania technologiczne dotyczące infrastruktury INSPIRE były one na bieżąco uwzględniane w pracach przedstawianego projektu w możliwie jak największym stopniu. Geoserwer, stanowiąc główny element węzła infrastruktury, funkcjonuje w otoczeniu innych jej składników i dlatego jego współpraca z otoczeniem ma istotny wpływ na jego architekturę . na komponenty systemowe i ich wzajemne powiazania interfejsami. Z tego powodu koncepcja technologiczna geoserwera jest uzależniona od koncepcji architektonicznej infrastruktury, w której ma funkcjonować. Z tego względu opracowana została ogólna koncepcja architektury polskiej IIP, w której ramach mieści się także polska część infrastruktury INSPIRE. Opis tej koncepcji stanowi pierwszą część monografii. Istotnym w tym przypadku problemem jest dwoistość IIP wynikajaca z faktu, że w jej skład wchodzą zarówno węzły INSPIRE, jak i inne węzły, których obecność wynika z obowiązujących w Polsce przepisów prawnych. Te dwie kategorie węzłów różnią się zadaniami jakie mają realizować i w rezultacie stosowanymi w nich technologiami, a w szczególności różnią się modelami danych i treści przechowywanej i udostępnianej geoinformacji. To stwarza konieczność równoległego utrzymywania dwóch różnych kategorii zbiorów danych i transformacji danych z modeli krajowych do modeli INSPIRE. Uwzgl?dniając wymagania technologiczne wynikające z założeń architektonicznych IIP opracowany został prototyp jej węzła dedykowanego danym z określonej dziedziny, w tym przypadku z zakresu hydrogeologii. Jednym z przyjętych tu założeń było zastosowanie komponentów programowych należących wyłącznie do kategorii Open Source. Wybór komponentów, poprzedzony pracami studialnymi i eksperymentalnymi, był następujący: m serwer komunikacji HTTP . Apache 2, m oprogramowanie dynamicznego generowania odpowiedzi . PHP Engine v. 5.2.6, m podstawowy komponent geoserwera . MapServer v. 5.6.1, m system realizujący komunikację PHP-MapServer . moduł PHP/MapScript, m środowisko komunikacji klient-serwer interfejsu webowego . p.mapper . Frame work. Opracowano kilka wersji geoserwera dla różnych platform sprzętowo-systemowych, a następnie przeprowadzono testy poprawności funkcjonowania i wydajności. W wyniku tych testów zostały wytypowane dwie wersje uznane za stabilne, wydajne, poprawnie funkcjonujące, a jednocześnie łatwe w instalacji, konfiguracji i administrowaniu. W obu przypadkach systemem operacyjnym jest Linux Debian, a dwie jego platformy sprzętowe to systemy o architekturze RISC z procesorami SUN Sparc i systemy o architekturze CISC z procesorami typu Intel Xeon lub im podobnymi. Pracujący geoserwer jest dostępny pod adresem http://inspire.geo.uw.edu.pl, a całe jego oprogramowanie może być udostępniane bez ograniczeń jako Open Source na zasadach licencji GNU GPL lub EUPL.
EN
Initial works are carried out in Poland to develop the Polish part of the Infrastructure for Spatial Information in Europe (INSPIRE) defined in the INSPIRE Directive. Implementation of tasks resulting from this Directive puts Polish geoinformation community in front of difficult problems of both organizational and technological nature. Therefore, the author has undertaken experimental research and study in the framework of a three-year project financed by the Ministry of Science and Higher Education. The project aims at elaboration of methodology and technology for development of a thematic hydrogeology-oriented geoserver meeting the requirements of standards and specifications concerning geoinformation and its availability in Internet. With the progress of works carried out by European teams on documents defining detailed technological requirements concerning INSPIRE their results have been included as far as possible in the works of the project presented here. The geoserver constitutes the main element of the infrastructure node and functions in the environment of other elements; therefore, its cooperation with environment exerts significant impact on its architecture . on system components and their mutual links by interfaces. Technological concept of the geoserver thus depends on architectural concept of the infrastructure in which it is intended to function. Therefore, a general concept of the architecture of the Polish Spatial Information Infrastructure (IIP) was developed. Description of this concept constitutes the first part of the monograph. An important problem in this case is the duality of IIP resulting from the fact that it contains both INSPIRE nodes and other nodes which presence is enforced by the provisions of law. These two categories of nodes have different tasks and, therefore, different technologies are applied for them, in particular they differ with regard to data models and content of the information stored and made available. This brings the need to keep parallel two different categories of data sets and data transformation from national data into the INSPIRE models. Taking into account technological requirements resulting from the architectural assumption of IIP a prototype of its node was elaborated dedicated to a specific area, in this case . hydrogeology. One of the assumptions taken here was the use exclusively of software components of Open Source category. We made the following selection of components preceded by studies and experimental works: m Communication server HTTP . Apache 2. m Software for dynamic answer generation . PHP Engine v. 5.2.6. m Basic component of the geoserver . MapServer v. 5.6.1. m System realizing communication PHP-MapServer . module PHP/MapScript. m Web interface of client-served communication environment . p.mapper . Framework. A few versions of the geoserver for different equipment-software platforms were prepared and tests of proper functioning and efficiency were carried out. Following these tests two versions were selected, which were found stable, efficient, properly functioning and, at the same time, easy for installation, configuration and administration. In both cases Linux Debian is the operation system and the two equipment platforms are systems with RISC architecture and SUN Sparc processors and systems with CISC architecture with the processors of Intel Xeon type or similar. Functioning geoserver is available at the address http://inspire. geo.uw.edu.pl and the whole software is available without any restrictions as Open Source according to the license regulations of GNU GPL or EUPL.
Czasopismo
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1--98
Opis fizyczny
Bibliogr. poz. 302
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autor
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