GEOINFORMATICS

Geoinformatics Laboratory

Vision:

To become a leading center of excellence in Indonesia and recognized by the International (Asia) in terms of innovation, education, and application of information technology in the geospatial field. With a projection to the future, computing and internet technology-based applications will cover all strategic, tactical and strategic levels in the field of human resource improvement, data acquisition technology application, database management, spatial data analysis and modeling as well as visualization technology which is always developing continuously. exploit the three pillars of innovation: the latest technology, the needs of society and the spatial industry

Mission:

Strengthen research collaborations with colleagues and industry Publishes cutting-edge research in leading journals and conferences Develop a general and holistic framework that all researchers in the geoinformation-based lab can collaborate together on research and education Develop and modify geospatial technology based on the latest information technology to be applied and obtained its benefits for the benefit of society and the world of education in general.

Aim:

Participate in managing and developing subject groups related to the surveying and cadastral fields Able to contribute in research and community service related to surveying and cadastral fields Able to manage and maintain the sustainability of the laboratory as a center for the activities of laboratory members and students in carrying out education, research and community service activities.

No Topik Utama Sub Topik
1. Geo-Komputasi Spasial Programming,  GIS cloud computing, LiDAR complex algorithm
2. Geo-Informasi System Modelling and Analysis, Decision Support System, Urban Analysis,
3. Geo-Visualisasi Urban, Disaster  and Hazard visualization base on Geographical Information Systems, Tangible Landscape

Research and Community Service Profile:

  • One of the products of the G-i lab is the manufacture of historical building models. Data acquisition using Close Range Photogrammetry techniques both with terrestrial cameras and assisted by drone cameras and positioning with Geodetic GPS. Furthermore, data in the form of photos will be processed and after several stages a 3D model is generated, then the data will be exported in the form of an STL file and printed on a 3D printer
  • Since 2019, G-i Lab has designed a topographic 3D simulator based on AR technology. The Topography Augmented Reality (Top-AR®) tool is a system consisting of a computer, sensor, projector and sand media that allows users to visually create a topographic surface model in real time. With this system, users will also learn the concept of elevation surface models as in theory in the fields of geodesy / geomatics, geography, landscape / spatial planning, geology / mining or hydrology. This product is ideal for use as a learning tool / exhibition / demonstration directly in class, technology exhibitions and museums in the context of the learning process about earth sciences.
  • In its development this system has been used in several agencies including those that have used this media is the Pangkal Pinang Tin Museum. This system has been installed at the Tin Museum as a vehicle for learning for visitors, most of whom are students. As for the field of Community Service, this system has been used as a learning infrastructure for manufacturing and installation because it is Open Source, one of which is the Department of Environmental Geography, Faculty of Geography UGM.

In its development this system has been used in several agencies including those that have used this media is the Pangkal Pinang Tin Museum. This system has been installed at the Tin Museum as a vehicle for learning for visitors, most of whom are students. For the field of Community Service, this system has been used as a learning infrastructure for manufacturing and installation because it is Open Source, one of which is the Department of Environmental Geography, Faculty of Geography UGM.

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