OKSI Developed AI Seeker for GPS-Denied Munitions

The new guidance system enables missiles to track targets via onboard computer vision rather than satellite signals.

Updated on Oct. 2, 2026 in Artificial Intelligence

Bold flat-color illustration featuring a stylized conical sensor on a robotic arm, representing autonomous AI guidance systems.
U.S.-based OKSI has developed an artificial intelligence seeker system that enables munitions to track targets autonomously in GPS-denied environments. AI Illustration. Upload story photo >

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The U.S. firm OKSI has developed an artificial intelligence seeker designed to guide munitions in GPS-denied environments. The system allows weapons to maintain target tracking using sensors and algorithms without relying on external satellite navigation.

Why it matters

This technology addresses the critical vulnerability of munitions in environments where satellite signals are jammed or unavailable. It shifts target acquisition from reliance on external positioning systems to autonomous onboard processing.

The Intelligent Seeker integrates electro-optical and infrared sensors to perform terminal guidance at speeds from low subsonic to hypersonic. This represents a move away from standard GPS-assisted navigation toward fully autonomous target acquisition.

The players

OKSI

A United States-based firm specializing in computer vision and guidance algorithms for defense applications.

The details

The system utilizes onboard computer vision — a field of AI enabling computers to interpret and act on visual data from the world — to maintain a lock on targets. By integrating these sensors with sophisticated terminal logic, the software calculates target positioning in real-time. This eliminates the need for a GPS connection, which can be vulnerable to electronic warfare countermeasures.

Timeline

  1. October 2, 2026: The AI seeker technology was reported.

The Tech Race

This development follows the Pentagon's focus on Resilient and Survivable Position, Navigation, and Timing (PNT) as it seeks to operate in contested electronic warfare environments. It represents a significant step toward decoupling precision munitions from reliance on satellite constellations.

The development primarily affects military procurement strategies rather than commercial markets. Implementation timelines for specific hardware integration remain unannounced, though the capability for hypersonic tracking is now technically demonstrated.

The takeaway

This development marks a transition toward fully autonomous guidance in contested environments. Watch for future integration announcements regarding which specific munition platforms will adopt this computer vision suite.

Further reading

For more on how machine learning is reshaping defensive systems, see Artificial Intelligence.

Source note: This article includes information reported by The Defense Post.

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