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About Positioning GNSS is currently widely used. On a global scale, GNSS positioning can achieve precise positioning at a data rate of up to 100 times per second, no matter when or where. The measurement results can be generated in real-time or processed after the task is completed, ensuring the highest accuracy and achieving high-precision positioning.

Satellite based positioning systems can provide the most accurate global location information. As long as there is GNSS satellite signal coverage, GNSS satellites can obtain positioning information at a data rate of up to 100 hertz, achieving high-precision positioning at any time and place.


The GNSS antenna array has the characteristics of high gain and wide beamwidth, which can receive signals with low elevation angles. Therefore, it performs well in tracking visible satellites in complex environments. It provides accurate and reliable data for positioning solutions, which are applied in military, resource environment, disaster prevention and reduction, surveying and mapping, power and telecommunications, urban management, engineering construction, mechanical control, transportation, agriculture, forestry, fishing and animal husbandry, archaeology, life, Internet of Things, and location services.

  • Supports GPS, GLONASS, Beidou, Galileo, and L-band

  • The stable phase center of this antenna ensures millimeter level positioning accuracy

  • Strong anti-interference ability, able to withstand the worst operating environment

GNSS technology is most commonly used for:

①Determine the position of an object on or relative to Earth for navigation

②Positioning another object relative to it for tracking purposes


The commonly provided positioning information includes the horizontal domain (latitude/longitude or east/north) and the vertical domain (altitude).GNSS positioning solutions have a wide range of application areas in practical scenarios. Although the application of this technology is infinite, key applications in the field include:

  • Location determination

  • Measurement

  • Vehicle/aircraft/ship/person tracking

  • Sports applications

  • Agricultural equipment operation

  • Unmanned aerial vehicles and unmanned ground vehicles

  • Automatic landing of aircraft


About Positioning


Features:

  • Real time and task post-processing solutions

  • Independent and relative positioning options

  • There are multiple formats to choose from for positioning output

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