OSCorp develops autonomous spacecraft Command and Control (C2) systems that utilize advanced sensor fusion, AI/ML algorithms, and robotic technologies to enhance Space Domain Awareness and manage orbital threats. Their solutions enable precise tracking and inspection of uncooperative objects, ensuring the protection of critical national security and commercial space assets.
Funding
Funding not disclosed
Founders
Product
Problem
Current methods for tracking and managing objects in space lack the precision and automation needed to effectively address potential threats to critical space assets. Identifying and responding to Anti-Satellite (ASAT) launches and Uncorrelated Tracks (UCTs) in a timely manner remains a significant challenge. The increasing volume of space debris and uncooperative objects also poses a risk to operational spacecraft.
Solution
OSCorp develops autonomous spacecraft Command and Control (C2) and Space Battle Management (SBM) systems designed to enhance Space Domain Awareness (SDA) and protect space assets. Their technology utilizes advanced sensor fusion, AI/ML algorithms, and robotic technologies to enable precise tracking, identification, and management of orbital objects. OSCorp's solutions facilitate the inspection and potential salvaging of uncooperative objects through fuel-optimal maneuvers. The company is developing an end-to-end solution comprised of three complementary projects—LIBRA, ShARCS, and PHALANX—to deliver comprehensive space security and superiority. Their hosted control system payload includes autonomous Guidance, Navigation, and Control (GNC) for spacecraft and robotic arm management, coupled with a compact LiDAR/VISCAM sensor package for optical navigation and 3D imaging.
Target Audience
OSCorp serves the U.S. government, particularly the United States Space Force (USSF), and commercial space operators requiring advanced Space Domain Awareness (SDA) and in-space services.
Features
- Autonomous Guidance, Navigation, and Control (GNC) systems for precise spacecraft maneuvering
- AI/ML-powered sensor fusion for enhanced object identification and tracking
- Compact, low Size, Weight, Power, and Cost (SWaP-C) LiDAR/VISCAM sensor package for optical navigation and 3D imaging
- Automated kill chains for space battle management, including real-time target identification, tracking, and acquisition
- Hosted control system payload for modeling and control of spacecraft and robotic arms
- Fuel-optimal maneuver planning for inspection and salvaging of uncooperative objects
- Capability to identify, track, and maintain custody of potential Anti-Satellite (ASAT) launches and Uncorrelated Tracks (UCTs)