Abstract

최근 신재생에너지 자원에 대한 사회적인 관심 증대와 맞물려 IT(Information Technology) 기술과 공간정보기술의 급속한 발전에 따라 신재생에너지 분야에서도 GIS(Geographic Information System) 공간정보 분석 기술과의 융합을 통하여 체계적이고 과학적인 활용 방법들이 많이 연구되고 있다. 본 연구에서는 정확한 지형, 경제, 문화적 환경 요소들을 종합적으로 고려한 정확하고 정밀한 풍력에너지 시설물 적지분석 시스템 모듈 개발과 동시에 3차원 GIS 등과 같은 최신 공간 정보기술을 활용하여 정밀한 현장정보 구현과 3차원 결과물 표출, 3차원 객체 구현, 모의 등 풍력 신재생에너지 관련 종합정보를 관리할 수 있는 3차원 Web GIS 기반 풍력에너지 시설물 적지분석 시스템을 개발하였다. 이를 통하여 과학적인 신재생에너지 시설물 단지 조성과 함께 정확하고 정량적인 정보 수집, 관리, 분석이 가능할 뿐만 아니라 실시간 정보제공체계 구축의 전환점을 마련할 수 있었으며 3차원 영상기반 신재생에너지 자원정보 관리시스템 구축을 통한 다양한 현장정보 분석이 가능함으로써 합리적 의사결정 지원을 할 수 있게 되었다. Recently, with an increased social interest in new and renewable energy resources, together with rapid advancement in IT(information technology) and spatial information technology, there have recently been a lot of attempts to find out methods to make systematic and scientific use of information technology and spatial information technology, depending upon a fusion with GIS(Geographic Information System) spatial information technology in the field of new and renewable energy. This paper developed a suitability analysis system to conduct a correct and precise analysis of an ideal place for wind energy facilities in comprehensive consideration of topographic, economic, and cultural environments. It also used recent spatial information technology including 3D GIS to develop a supportive system for an analysis and decision making of an ideal place for 3D Web GIS-based wind energy facilities like a precise field information implementation, a 3D result display, a 3D object implementation, simulation, and so on. These systems make it possible to build scientific new-renewable energy facilities, to collect, manage and analyze information in an accurate and quantitative manner. In addition, they help serve as a turning point for the construction of a real-time information supply system. Furthermore, they can support rational decision making by making it possible to analyze a variety of forms of field information through building a system for the management of 3D image-based information on new-renewable energy resources.

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