ORBITSET is a future-focused Space-Tech and intelligent-systems platform working across space technology, satellite systems, Earth observation, space data, artificial intelligence, autonomous systems, robotics, and advanced mobility.
“Build technology that expands human capability on Earth and beyond.”
We exist to solve the extreme computation, communication, perception, and navigation challenges that separate current human infrastructure from autonomous planetary exploration and deep geospatial awareness.
“A seamless continuum between orbital intelligence and terrestrial robotics.”
We envision an interconnected intelligence architecture where satellites act as high-altitude neural sensors, space data streams directly into autonomous decision engines, and ground rovers navigate extreme terrains with total autonomy.
Every algorithmic decision, neural policy, and trajectory calculation must be grounded in verified orbital mechanics, thermodynamics, and mathematical safety proofs.
In space and autonomous robotics, late data is wrong data. We prioritize deterministic RTOS execution, lock-step cores, and guaranteed microsecond timing loops.
Systems must remain fully functional when isolated from cloud infrastructure. Onboard quantization and local SLAM allow autonomous survival through extended blackouts.
We publish exact stage classifications—Concept, Research, Prototype, Development, or Future—distinguishing validated bench models from theoretical hypotheses.
We engineer with open aerospace specifications: CCSDS communications, STAC geospatial indices, VITA 49.2 baseband transport, and ROS2 robotic nodes.
Every innovation engineered for extreme space conditions—high-radiation chips, hyperspectral vision, wide-temp batteries—directly tackles pressing terrestrial challenges.
A decade-long commitment to disciplined technology maturation.
Establishing calibrated laboratory hardware-in-the-loop (HIL) testbeds and edge neural compilers.
We are assembling world-class engineers in aerospace systems, embedded Rust/C++, computer vision, kinematics, and deep neural compilers.