Advanced Space is a mission design, spacecraft navigation, and software solutions company focused on enabling the sustainable exploration, development, and settlement of space. They provide mission-enabling services, technology & software solutions, and end-to-end mission solutions, often partnering to accomplish new missions. Advanced Space supports innovative spaceflight missions and works with organizations like NASA and the USAF. Their work includes supporting mission planning and operations with state-of-the-art software tools.
All verified mentions of this organization in source documents.
The second phase (2028–2035) aims to conduct advanced space missions including the Tianwen-4 mission to Jupiter, solar system boundary exploration, and the International Lunar Research Station (ILRS).
Advanced Space is working with NASA and the U.S. Air Force Research Laboratory to provide testing opportunities on CAPSTONE.
Slingshot Aerospace is in discussions with U.S. government and allied organizations, as well as commercial satellite operators, about offering Agatha as part of advanced space situational awareness services.
The Space Development Agency will seek to demonstrate advanced space-based sensors designed to track and destroy hypersonic missile threats.
During the 2024-03-10 test, Advanced Space tested one example each of nine anomaly classes using SigmaZero: mismodeled gravity field, spinning spacecraft, outgassing, momentum desaturation maneuver, mismodeled finite burn, radio dropout, mismodeled solar radiation pressure, mismodeled atmospheric drag, and nominal.
MuSat2 includes Muon Space's advanced space-qualified software-defined radio system that performs high-speed bi-directional communications and produces science-quality radio frequency signal observations with very high bandwidth.
AnySignal partnered with Vast to develop an advanced space communication system for Vast’s Haven-1 space station.
Advanced Space operates the CAPSTONE spacecraft, the Cislunar Autonomous Positioning System Technology Operations and Navigation Experiment.
Advanced Space can perform extended operations with CAPSTONE’s onboard hardware and flight processor after completing an enhanced mission in May 2024 due to significant fuel margin.
NASA’s Jet Propulsion Laboratory collaborated with Advanced Space to develop the one-way uplink measurement capability for CAPSTONE.
CAPSTONE was designed, built, and integrated by Terran Orbital and is owned by Advanced Space.
ISRO will continue as a civil space agency focusing on research and development of advanced space technologies.
In November, AFRL awarded a $72,000,000 contract to Advanced Space to develop the Oracle spacecraft.
Advanced Space selected the General Atomics Electromagnetic Systems ESPA-Grande class satellite bus as the platform for Oracle.
The Advanced Space SINTRA team will use machine learning methods to decrease the signal-to-noise ratio required to detect debris signatures in traditional optical and radar data.
Advanced Space LLC has been selected to apply Machine Learning capabilities to detect, track, and characterize space debris for the IARPA Space Debris Identification and Tracking SINTRA program.
The Advanced Space team's solution is the Multi-source Extended-Range Mega-scale AI Debris (MERMAID) system.
The Advanced Space team will use Machine Learning methods to decrease the Signal-to-Noise Ratio required for detecting debris signatures in traditional optical and radar data.
Advanced Space, Orion Space Solutions, and ExoAnalytic Solutions are applying advanced Machine Learning techniques to identify small debris ranging from 0.1 to 10 centimeters under the SINTRA contract from IARPA.
Advanced Space won a Phase I SBIR project under the Flight Dynamics and Navigation Technologies subtopic to support spacecraft trajectory design for vehicles flying in cislunar space using low-thrust propulsion.