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Complex Electromagnetic Environment Simulation Test System

Builds a wireless test environment to simulate visible satellite signals and complex interferences in open spaces—including 3D dynamic angle shifts between interference and satellite signals.

Solution Overview

Builds a wireless test environment to simulate visible satellite signals and complex interferences in open spaces—including 3D dynamic angle shifts between interference and satellite signals. It enables thorough testing of navigation terminals’ dynamic/static performance and anti-jamming capability in tough electromagnetic environments.

It simulates multi-system navigation signals (with BDS at the core) and band-specific interference, pairing anechoic chamber testing with real-world environment modeling to replicate occlusion and multipath effects. It delivers quantitative performance evaluations of devices under test and detailed reports.


 

"All-Sky" Anechoic Chamber

It simulates multi-system navigation signals (with BDS at the core) and band-specific interference, pairing anechoic chamber testing with real-world environment modeling to replicate occlusion and multipath effects. It delivers quantitative performance evaluations of devices under test and detailed reports.

 

"All-Sky" Anechoic Chamber Full-Element Modeling (Discrete Antenna Array

Uses Ray Tracing for signal modeling, with 3D animations of signal beams to deliver accurate, intuitive real-time visual feedback.

 

"All-Sky" Anechoic Chamber Environment Visualization Design


Solution Highlights

Supports simultaneous output of satellite signals from BDS, GPS, GLONASS, Galileo, NavIC, and QZSS navigation systems

Features flexible scenario generation and signal control capabilities, capable of generating navigation satellite signals, array interference signals, navigation spoofing signals, and multipath interference signals required for high-dynamic receivers

Supports inbound short message signal reception, processing, and closed-loop testing

Enables simulation of navigation and interference signals from different incident directions

Zero-delay, non-jitter switching between satellite signal antennas, meeting full-time testing requirements

Supports automated control of test processes and real-time/post-hoc evaluation of experimental results

Features automated calibration of system link parameters such as power, transmission delay, and frequency

Enables monitoring of navigation and interference signals (including signal power, pseudorange, navigation messages, etc.)

Supports 3D real-time monitoring and display of test scenarios (including directions of satellite/interference signals and attitude changes of the tested terminal)

Equipped with a rich test scenario library, supporting conventional navigation performance testing as well as integrated navigation, dynamic/static RTK, and antenna performance testing

Solution Applications

The Satellite Navigation Complex Electromagnetic Environment Simulation Laboratory supports "All-Sky" RNSS/RDSS output for conventional/anti-jamming navigation test scenarios, "All-Sky" RTK output for conventional/anti-jamming navigation test scenarios, and "All-Sky" integrated navigation output for conventional/anti-jamming navigation test scenarios. Key test items include:

Navigation positioning testing

Integrated navigation testing

High-precision RTK testing

Short message transmission & reception testing

Anti-narrowband suppression interference testing

Anti-broadband suppression interference testing

Anti-distributed cooperative interference testing

Anti-relay spoofing interference testing

Anti-generative spoofing interference testing

Anti-single-station suppression interference capability testing

Anti-multi-station suppression interference capability testing

Beam pointing accuracy testing

Interference direction detection

EIRP testing


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