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Fournisseur d'antenne GPS personnalisé / Bédou
Les antennes GPS et les antennes Beidou font partie du plus grand système de satellite de navigation mondiale (GNSS) et fonctionner pour recevoir des signaux de satellites orbite autour de la Terre, permettant un positionnement précis, navigation, et le timing. Alors que “Antenne GPS” est un terme commun, Il se réfère techniquement aux antennes qui soutiennent le réseau GNSS plus large, qui comprend le GPS, Glonass, Galileo, et beidou.
Les antennes GPS et les antennes Beidou font partie du plus grand système de satellite de navigation mondiale (GNSS) et fonctionner pour recevoir des signaux de satellites orbite autour de la Terre, permettant un positionnement précis, navigation, et le timing. Alors que “Antenne GPS” est un terme commun, Il se réfère techniquement aux antennes qui soutiennent le réseau GNSS plus large, qui comprend le GPS, Glonass, Galileo, et beidou.
GPS antennas and BeiDou antennas have both similarities and differences in technical implementation and application scenarios. The following is a comprehensive comparative analysis:
je. Polarization mode and frequency band characteristics
Polarization mode:
GPS antennas generally adopt right-hand circular polarization design to match the characteristics of GPS satellite signals.
BeiDou antennas also mainly use right-hand circular polarization at the receiving end, but the early BeiDou first-generation transmitting antenna used left-hand circular polarization design.
Compared with vertical polarization, circular polarization can reduce the impact of multipath interference and improve signal stability48.
![]() 18*18mm 28dBi high gain GPS, Beidou built-in active ceramic antenna IPEX connector |
![]() 35*35mm GPS, Beidou double-layer active ceramic built-in antenna |
![]() 69*8mm GPS built-in PCB antenna |
Frequency band coverage:
GPS mainly works in the L1 (1575.42MHz) band, while BeiDou supports multiple bands such as B1 (1561MHz), B2, and B3.
Dual-mode antennas (such as GPS+BeiDou) need to be compatible with different frequency bands. Common implementation methods include microstrip patch structure or frequency division design.
Signal Reception:
GPS and BeiDou antennas are designed to capture radio signals emitted by satellites in the corresponding constellations.
Positioning, Navigation, and Timing:
These signals are used by devices to calculate the user’s location, determine direction, and provide accurate time synchronization.
GNSS Applications:
GPS and BeiDou antennas are used in various applications, including navigation, mapping, tracking, surveying, and scientific research.
![]() GPS+Beidou ceramic active 28DBI high gain dual frequency antenna |
![]() 45*38mm GPS, Beidou high gain vehicle navigation positioning antenna Fakra connector |
![]() 48*39mm GPS Beidou external dual-mode antenna SMA connector |
Ii. Design and performance parameters
Antenna type:
Passive antennas (ceramic dielectrics) are often used as basic receiving units and rely on signal strength; active antennas integrate low noise amplifiers (LNA) and are suitable for weak signal environments.
In vehicle applications, external antennas are often better than built-in designs to avoid interference from metal bodies or explosion-proof membranes to signal reception.
Key Performance Indicators:
Axle Ratio: Measures the balance of multi-directional signal reception and directly affects positioning accuracy.
Gain and Sensitivity: High-gain antennas can improve long-distance signal capture capabilities, but power consumption and anti-interference requirements must be weighed.
Anti-interference capability: BeiDou antennas need to deal with natural interference such as solar storms and multipath effects, as well as local electromagnetic interference.
BeiDou Specifics:
Multiple Service Capabilities:
The BeiDou system offers a range of services beyond just positioning, including short message communication and international search and rescue.
Regional and Global Applications:
BeiDou is designed to provide reliable positioning and navigation, especially in regions with limited access to other GNSS systems.
![]() USB interface Waterproof Active GPS positioning antenna |
![]() Antenne GPS radio satellite étanche SMB Femme SMB |
![]() RTK / RTD GNSS Fréquence complète L1L2L5 ANTENNE BEIDOU MOUPÉE DE VÉHICULE LE |
III. Compatibility and Application Scenarios
System Compatibility:
GPS and BeiDou systems in the civil field have achieved signal compatibility, and dual-mode antennas can simultaneously receive signals from multiple systems to improve positioning reliability.
Some terminals (such as mobile phones) support dual-frequency GPS and tri-frequency Beidou collaborative positioning by integrating multi-band antenna solutions.
Typical applications:
Navigation equipment: In-vehicle navigation relies on external magnetic antennas to enhance signals, while mobile devices such as drones tend to use compact built-in antennas.
High-precision positioning: High-precision scenarios such as autonomous driving require the combination of Beidou B3 band to enhance anti-interference capabilities and optimize antenna gain and axial ratio.
Key Differences and Similarities:
Satellite Constellation:
GPS antennas primarily receive signals from the American GPS satellite constellation, while BeiDou antennas primarily receive signals from the Chinese BeiDou satellite constellation.
Signal Frequency:
GPS and BeiDou utilize different frequency bands for their signals. GPS commonly uses L1 and L5 frequencies, while BeiDou uses B1, B2a, B2b, and B3 frequencies.
Regional and Global Coverage:
While GPS and BeiDou systems provide global coverage, the BeiDou system is particularly beneficial for users in the Asia-Pacific region.
Antenna Design:
Antennas can be internal (integrated into a device) or external (mounted on a vehicle or other equipment). They can also be active (with an amplifier) or passive (without an amplifier).
Multi-Frequency Antennas:
Some antennas are designed to receive signals from multiple constellations (GPS, Glonass, Galileo, BeiDou) and multiple frequency bands for Improved accuracy and reliability.
Performance:
Antennas are designed with features like low noise figures, high gain, and out-of-band rejection to ensure accurate and reliable signal reception.
Iv. Selection and installation recommendations
Environmental adaptation
Active antennas are preferred in areas with strong electromagnetic interference, and should be kept away from motors and high-power radio equipment.
The built-in antenna should be kept away from the mainboard EMI source (such as CPU, memory), and the housing should be well grounded.
Debugging and maintenance
The antenna orientation (vertically upward) should be strictly calibrated during installation to avoid multipath reflection errors.
Regularly check the antenna standing wave ratio (VSWR) and noise factor to ensure long-term stable operation.
Summary
GPS and Beidou antennas are highly similar in core technology, and the differences are mainly reflected in frequency band adaptation and anti-interference optimization. Dual-mode antenna design has become a mainstream trend, which meets the needs of high-precision positioning in complex environments by being compatible with multi-band and multi-system signals.
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