The Maritime FOG INS is a rugged, strapdown inertial navigation system (INS) designed for the most demanding maritime and naval environments. Utilizing fiber-optic gyroscopes (FOG) or ring laser gyroscopes (RLG) combined with high-precision quartz accelerometers, the system provides continuous, real-time navigation gyro outputs with unmatched accuracy in heading, roll, pitch, speed, and position—even in GNSS-denied or GPS-compromised scenarios.
Autonomous inertial navigation for GPS-denied missions
INS/GNSS integrated navigation using advanced Kalman filter algorithms
Velocity-augmented navigation for dynamic marine maneuvers
Attitude Heading Reference System (AHRS) capabilities
High-speed real-time navigation processing for shipboard, USV, AUV, and offshore platforms
Reliable maritime INS performance under harsh conditions (shock, vibration, temperature extremes)
High-precision fiber gyroscope and laser inertial navigation system accuracy
Quick alignment and startup for mission-critical operations
Flexible integration into existing inertial measurement systems and inertial navigation units
Supports both commercial maritime and defense naval applications
Shipboard navigation & gyrocompass replacement
Tactical maritime guidance and platform stabilization
Autonomous marine vehicles (USVs, AUVs)
Offshore and research vessels
Defense and naval operations requiring high-accuracy inertial guidance systems
The Maritime FOG INS is a rugged, strapdown inertial navigation system (INS) designed for the most demanding maritime and naval environments. Utilizing fiber-optic gyroscopes (FOG) or ring laser gyroscopes (RLG) combined with high-precision quartz accelerometers, the system provides continuous, real-time navigation gyro outputs with unmatched accuracy in heading, roll, pitch, speed, and position—even in GNSS-denied or GPS-compromised scenarios.
Autonomous inertial navigation for GPS-denied missions
INS/GNSS integrated navigation using advanced Kalman filter algorithms
Velocity-augmented navigation for dynamic marine maneuvers
Attitude Heading Reference System (AHRS) capabilities
High-speed real-time navigation processing for shipboard, USV, AUV, and offshore platforms
Reliable maritime INS performance under harsh conditions (shock, vibration, temperature extremes)
High-precision fiber gyroscope and laser inertial navigation system accuracy
Quick alignment and startup for mission-critical operations
Flexible integration into existing inertial measurement systems and inertial navigation units
Supports both commercial maritime and defense naval applications
Shipboard navigation & gyrocompass replacement
Tactical maritime guidance and platform stabilization
Autonomous marine vehicles (USVs, AUVs)
Offshore and research vessels
Defense and naval operations requiring high-accuracy inertial guidance systems