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Civilian Applying Gps navigation Technology


Gps navigation technologies are now greatly prevalent in commercial aviation. Most commercial jetliners now more and more employ Gps navigation navigation for initial and non-precision method of specified airfields. The Automated Dependent Surveillance – Broadcast (ADB-B) may be the advanced primary guidance and navigational Gps navigation technology that a large amount of research, development and investments are now being put in. The ADB-B technology also involves direct inter-aircraft communication inside a pre-defined radial closeness in which it enables the aircraft to inter-communicate their relative speeds, distances, flight pathways and locations. The introduction of fraxel treatments isn’t limited to the one country but has been developed globally through proper technological multi-lateral alliances. Besides its use within commercial aviation, the Gps navigation ADB-B technology may also be used in the navigation Unmanned Aerial Vehicles (UAVs). The UAV’s are mainly employed for resource mapping and air surveillance imaging – an activity which was formerly tasked to earth orbiting satellites like the NASA Landsat.

Shipping and Rail Transport

The all encompassing, all progressing Gps navigation technologies have further underlined its presence in the area of maritime technology. Gps navigation technology has since replaced conventional electronic maritime technology and it is now working to incorporate such vital operational parameters as sea and inshore navigation, dredging, port and harbor entrance approach navigation and docking, Vessel Traffic Services (VTS), Automatic Identification System (AIS), hydrographical data collection and cargo logistics.

Regarding railroad navigation, Gps navigation technologies are broadly used right now to streamline such navigational essentials which include the treating of moving stock, passenger information, protection against door releases contingent to carriage platform alignment, cargo tracking signaling, train integrity and level crossing approach.


The applying Gps navigation technologies in a variety of scientific fields are very prevalent and impactful included in this are such areas as ecological and atmospheric monitoring, animal behavior studies, botanical specimen locations, meteorology and climate research, agriculture, fisheries and fishing, land area mapping, yield monitoring, precision planting of crops, spray and harvest monitoring, autonomous vehicle control.


Security is yet another very wide field which uses GOS technologies. Gps navigation security applications include tracking of all types of vehicles – light and high vehicles, 20 and 40 foot. containers comprising general cargo, special air-conditioned containers for perishable food products, security monitoring of vehicles for that change in crooks and suspects, etc.

It’s apparent the Gps navigation technologies are indeed very relevant and suitable for a really wide spectrum of scientific and technological applications which demand constant monitoring and tracking data, particularly if the targeted objects are essential, urgent, sensitive and precious. Including people, creatures, machinery, rare metal, currency notes, etc.

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