Commercial Applications of GPS Trackers

Heavy Vehicle Guidance

The particular mining and constructions industrial sectors today rely very greatly on GPS monitoring, monitoring and navigational data which is mainly because highway constructions, surveyors and gun pegs have been replaced with in-cabin vehicle assistance and control systems for excavators, graders, bulldozers and road paving machines.

These types of modern and advanced specialized vehicles allow their extremely trained drivers to plan their vehicles to react to pre-programmed site programs, thereby enabling the automobiles to achieve close threshold parameters for position, degree and gradient. GPS technologies is exclusively integrated regarding high-precision applications in open-cut mines such as vehicle and equipment tracking plus mine asset management. Within such hi-technology integrational apps, GPS critical data will be acquisitioned and decoded simply by superior IT systems plus meshed to engineering applications to provide multifunction assistance and control. Companies which may have integrated their vehicles and mine management systems include Leica Geo-systems, Topcon Positioning Systems and Trimble and Caterpillar.

Surveying, Mapping plus Geophysics

Advanced GPS survey-grade technology use L1 and L2 signal frequencies in order to position survey markers, structures, bridges, airports, harbors, train stations and various additional large infrastructures. This technologies can also be used to figure out aerial mapping, terrain data, through the Geographical Details System (GIS) applications.

GPS NAVIGATION is widely used in the acquisition of terrain plus aerial mapping data, sensitive physical formations such as volcanoes and earthquake problem lines as well as the tracking and monitoring of seismic and incipient activities. This essential seismic data is transmitted to TV and other news channels for earlier warnings to the public to ensure sufficient precautionary actions are taken well over time.


One of the particular major highlights in the particular characteristics of GPS satellite technology is the precision, reliability and stability within the synchronicity of its technologies and this has tested in order to be very compatible regarding telecommunications applications. It has been observed that GPS NAVIGATION synchronized technology allows satisfactory synchronization of Coordinated Universal Time (UTC) time with the resolution of signals from discrete atomic clocks at specified locations. Although ground-based Chip Scale Atomic Lighting (CSAC) are really precise for this purpose, the particular synchronization of the CSACs is usually rather problematic without the GPS satellite technology.


Since the local and global markets are fast globalizing, the global finance program that allows, governs, schedules plus prioritizes digitalized monetary dealings, funds transfers and review trails is becoming more and more contingent after high precision time techniques. Today, 80% of the particular an incredible number of daily global retail transactions are done through credit and debit credit cards. GPS satellite technology combines completely with on-board atomic clocks to be able to allow high speed and high precision local and global transactions.

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