Advanced Navigation Secured Deal for Polish Drone Defense
The firm will supply GPS-independent inertial navigation systems for use in Poland's counter-drone platforms.
Updated on Sept. 22, 2026 in Robotics

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Advanced Navigation has signed an $18.5 million contract to provide fiber-optic gyroscope systems to Kongsberg. These units will be integrated into 18 counter-drone batteries for Poland to ensure operational effectiveness despite potential signal interference.
Why it matters
Military forces are increasingly prioritizing navigation technology that operates without satellite signals to mitigate the risks of routine GPS jamming and spoofing. This deal equips Kongsberg platforms with the capability to maintain precise positioning in contested electronic environments.
The Boreas fiber-optic gyroscope systems utilize onboard sensors to calculate position and movement autonomously. This technology allows Kongsberg's PROTECTOR stations to remain fully functional during active GPS spoofing.
The players
Advanced Navigation
Headquartered in Australia, this firm specializes in high-precision navigation and robotics technology.
Kongsberg
This Norway-based defense contractor has delivered more than 20,000 remote weapon stations to over 30 countries globally.
Polska Grupa Zbrojeniowa
This state-owned holding company consolidates various Polish defense industries under a single corporate umbrella.
The details
The contract is part of the larger SAN CUAS program, which was initiated to bolster defense capabilities in Poland. By relying on advanced internal sensors rather than satellite constellations, these systems provide a critical fail-safe for remote weapons platforms.
Timeline
The SAN CUAS program contract was officially signed in January 2026.
Advanced Navigation announced the $18.5 million supply deal on September 22, 2026.
The Tech Race
This integration follows a global shift toward hardening military hardware against electronic warfare that can compromise satellite-reliant systems. It represents a significant evolution in defense robotics where internal autonomy is prioritized over traditional network dependence.
While the deal focuses on defense hardware, it highlights a broader move toward robust local navigation technologies that may eventually influence consumer-grade autonomous equipment. Users of precision robotics can expect more reliable performance in environments where satellite signal reliability is unstable.
The takeaway
The move underscores the growing necessity for navigation systems that function independently of external infrastructure in an era of electronic warfare. Reliability in GPS-denied environments is becoming a critical benchmark for modern autonomous defensive technology.
Further reading
For more background on the integration of autonomous systems in modern defense, visit our Robotics section.
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