Applications

Anti-Jam


Autonomous Vehicles

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Precision Agriculture

"Smart agriculture" is the comprehensive and comprehensive application of cloud computing, sensor network, 3S and other information technologies in agriculture, to achieve more complete information foundation support, more thorough agricultural information perception, more concentrated data resources, more extensive interconnection, more in-depth intelligent control, and more intimate public services. Agricultural

mechanization is one of the important bases of smart agriculture, which greatly improves the production efficiency and makes agricultural production enter the efficient mechanized operation from the traditional operation mode.

The role of GNSS

The automatic driving system of agricultural machinery is a comprehensive system integrating satellite signal reception, positioning and automatic control of agricultural machinery. GNSS high-precision satellite navigation system is a key component of the

automatic driving system, mainly composed of GNSS high-precision antenna and

agricultural machinery positioning terminal, which can obtain high-precision position

information of agricultural machinery operation vehicles in real time. According to the position, attitude and other information parameters of the agricultural machinery, the automatic driving system sends real-time instructions to the agricultural machinery

steering system in combination with the controller's calculation, and finally ensures that the agricultural machinery works in accordance with the planned route of the navigation display.


Robotics

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Survey

Surveying and mapping is an industry that obtains, processes and provides information about the earth's gravity field and the earth's surface geographic environment and human information, mainly including astrogeodesy, photogrammetry and remote sensing, mapping, engineering surveying and ocean mapping. With the continuous maturity of global satellite navigation and positioning technology and the gradual improvement of global satellite navigation system, the surveying and mapping industry has been greatly developed, and closely promote the popularization of related surveying and mapping technology and the application of measuring equipment.

The role of GNSS

When high-precision antennas are used in continuous operation of reference stations

and mobile stations,The reference station obtains accurate position information through long-term observation, and transmits the observation data

to the control center in real time through the data communication system. After calculating the error correction parameters within the area, the control center then passed the ground-based enhanced system wide-area kinematic and satellite-based enhanced

system, etc., and sent the erro information to the mobile station (client) through the RealTimeKinematic real-time dynamic measurement technology, so as to finally enable

users to obtain accurate coordinate information and enable measurement and mapping applications.


UAV

Unmanned aerial vehicle (UAV) is a kind of unmanned aerial vehicle operated by radio remote control equipment and its own program control device. With the gradual maturity of UAV research and development technology, manufacturing costs are greatly reduced, and drones are gradually popularized in the market, which has immeasurable benefits in improving life production efficiency, reducing workload and production costs, improving accuracy and operational safety. At present, it has been widely used in agricultural plant protection, power inspection, express transportation, police law enforcement, geological exploration, environmental monitoring, forest fire prevention and film and television aerial photography and other fields.

The role of GNSS

The UAV positioning antenna is equivalent to the "eye" of the UAV. The high-precision positioning technology includes compatibility with GPS, BDS, GLONASS, GALILEO and satellite-based augmentation systems, antenna beamforming, providing multi-system and multi-azimuth strong satellite signals to provide centimeter-level (its to millimeter level) positioning accuracy. At the same time, it can effectively deal with the interference between systems in the working environment of the UAV in the multi-communication frequency band, so that the UAV can always maintain stability during flight, and provide high safety during automatic cruise, which can effectively avoid the "explosion" of the UAV and ensure the reliability and controllability of the UAV in the work.

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