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・ GPRC5B
・ GPRC5C
・ GPRC5D
・ GPRC6A
・ GPRD
・ Gpremper
・ GPRename
・ GPRIN2
・ Gprof
・ GPRP
・ GPRS core network
・ GPRS roaming exchange
・ GPRS Tunnelling Protocol
・ GPS (band)
・ GPS (disambiguation)
GPS Aided GEO Augmented Navigation
・ GPS aircraft tracking
・ GPS Block IIF
・ GPS Block IIIA
・ GPS Construction
・ GPS data mining
・ GPS disciplined oscillator
・ GPS drawing
・ GPS Exchange Format
・ GPS for the visually impaired
・ GPS IIR-1
・ GPS in the Earthmoving Industry
・ GPS Inc v Syarikat Takaful Malaysia Berhad
・ GPS intelligent buoys
・ GPS meteorology


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GPS Aided GEO Augmented Navigation : ウィキペディア英語版
GPS Aided GEO Augmented Navigation

The GPS Aided GEO Augmented Navigation (GAGAN) is an implementation of a regional satellite-based augmentation system (SBAS) by the Indian government. It is a system to improve the accuracy of a GNSS receiver by providing reference signals. The AAI’s efforts towards implementation of operational SBAS can be viewed as the first step towards introduction of modern communication, navigation, surveillance/Air Traffic Management system over Indian airspace.〔(GAGAN Update Dr. Arjin Singh, Additional GM, Directorate of Global Navigation System, Airport Authority of India )〕
The project has established 15 Indian Reference Stations, 3 Indian Navigation Land Uplink Stations, 3 Indian Mission Control Centers, and installation of all associated software and communication links.〔http://www.thehindu.com/news/national/kerala/gagan-system-ready-for-operations/article5565700.ece〕 It will be able to help pilots to navigate in the Indian airspace by an accuracy of 3 m. This will be helpful for landing aircraft in tough weather and terrain like Mangalore and Leh airports.
==Implementation==
The project is being created in three phases through 2008 by the Airport Authority of India with the help of the Indian Space Research Organization's (ISRO) technology and space support. The goal is to provide navigation system for all phases of flight over the Indian airspace and in the adjoining area. It is applicable to safety-to-life operations, and meets the performance requirements of international civil aviation regulatory bodies.
The space component will become available after the GAGAN payload on the GSAT-8 communication satellite, which was launched recently, is switched on. This payload was also on the GSAT-4 satellite that was lost when the Geosynchronous Satellite Launch Vehicle (GSLV) failed during launch in April 2010. Final System Acceptance Test was conducted during June 2012 followed by system certification during July 2013.〔

抄文引用元・出典: フリー百科事典『 ウィキペディア(Wikipedia)
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