Odyssey develops AI-defined full-stack space supercomputers to enhance the efficiency of orbital data processing and distribution for applications in supply chain, climate monitoring, and national security. The company addresses the lack of scalable frameworks for delivering real-time actionable intelligence from diverse satellite sensors, enabling comprehensive situational awareness across land, air, and sea domains.
Funding
Funding not disclosed

Founders
Product
Problem
Current orbital data processing and distribution frameworks lack the scalability needed to deliver real-time intelligence from diverse satellite sensors. This limitation hinders comprehensive situational awareness across various domains, including land, air, and sea.
Solution
Odyssey is developing AI-defined full-stack space supercomputers designed to enhance the efficiency of orbital data processing and distribution. The company's Vision AI framework is built to deliver scalable intelligence from orbit, independent of specific sensors or constellations (optical, multi- and hyperspectral, SAR). By rebuilding the space data pipeline from infrastructure to distribution, Odyssey aims to provide advanced real-time actionable intelligence, enabling complete and comprehensive land, air, and sea domain awareness from space. This technology lays the foundation for a multi-planetary-scale network of orbital supercomputers.
Target Audience
The primary customers are organizations requiring real-time actionable intelligence derived from space-based sensors, including those in supply chain, climate monitoring, oil and energy, urban development, infrastructure, and defense and national security sectors.
Features
- AI-defined full-stack space supercomputers for orbital data processing
- Vision AI framework for efficient and scalable intelligence delivery from orbit
- Sensor and constellation independence (optical, multi- and hyperspectral, SAR)
- Real-time actionable intelligence delivery
- Comprehensive land, air, and sea domain awareness
- Technology designed to support a multi-planetary network of orbital supercomputers