1. Inertial Navigation System Testing
Calibrate gyroscope parameters such as bias, noise, and bandwidth to verify compliance with military or civilian standards.
2. Aerospace
Test the dynamic performance of aircraft inertial navigation systems during complex maneuvers (such as missile guidance and satellite attitude control).
3. Autonomous Driving and Vehicle Stability
Calibrating vehicle-mounted IMUs (inertial measurement units) to improve dead reckoning accuracy in the event of GPS failure.
4. Research and Education
Study the performance limits of new inertial sensors (such as quantum gyroscopes) or use them in control engineering experiments in universities.
5. Defense and Military
Test the stabilization systems of ships and tanks, or verify the reliability of drone navigation systems.
1. Inertial Navigation System Testing
Calibrate gyroscope parameters such as bias, noise, and bandwidth to verify compliance with military or civilian standards.
2. Aerospace
Test the dynamic performance of aircraft inertial navigation systems during complex maneuvers (such as missile guidance and satellite attitude control).
3. Autonomous Driving and Vehicle Stability
Calibrating vehicle-mounted IMUs (inertial measurement units) to improve dead reckoning accuracy in the event of GPS failure.
4. Research and Education
Study the performance limits of new inertial sensors (such as quantum gyroscopes) or use them in control engineering experiments in universities.
5. Defense and Military
Test the stabilization systems of ships and tanks, or verify the reliability of drone navigation systems.