FUTURE ELEMENTS TECHNOLOGY PTE was established in Singapore in September 2023!
Date:09-16
Hit:1195
Belong:News
FUTURE ELEMENTS TECHNOLOGY PTE is an innovative GIS platform software and service provider,Innovate IT Value with Geo-intelligence. The three-dimensional electronic sand table big data visual geographic information system(FUTURE 3D GIS) is a large-scale two- and three-dimensional integrated geographic information system independently developed by FUTURE ELEMENTS TECHNOLOGY PTE through gesture multi-touch control.FUTURE ELEMENTS TECHNOLOGY is dedicated to developing overseas market.We look forward to forming long-term and lasting cooperation with you.Meanwhile, We hope to provide high-quality independent and original geographic information platform software for geographic information software system enthusiasts around the world.
FUTURE ELEMENTS TECHNOLOGY focuses on providing innovative gis platform software and solutions for Electronic sand table, digital sand table, simulation deduction, situation mapping, virtual reality, augmented reality,various industries, such as smart city, land management, real estate, urban planning, pipeline management, public service, etc.
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What is GIS?
A spatial information system that provides the ability to collect, store, manage, analyze and describe the data of the whole earth surface
Geographical Information System (GIS) is a technical system, which is based on the Geospatial Database and adopts the method of geographic model analysis to provide various spatial and dynamic geographic information in time, and serves for geographic research and geographic decision-making. GIS has three features:
1、Has the ability to collect, manage, analyze and output a variety of geographic information, with spatial and dynamic characteristics
2、Has computer systems that support spatial geographic data management, and computer programs simulate conventional or specialized geographic analysis methods to act on spatial data
3、Enables quick, accurate, and comprehensive perform spatial positioning and dynamic analysis of processes for complex geographic systems