Aerospace & Autonomous Systems

Engineering the Future of Aerospace & Robotics

We design and build autonomous systems for the most demanding environments — from orbital spacecraft and aerial vehicles to ground robots and underwater platforms.

Machine Learning & AI

Real-Time ML Models for Aerospace & Robotics

Proprietary multi-modal AI models optimized for embedded hardware — semantic segmentation, object detection, depth estimation, and intelligent flight control running at the edge.

Guidance, Navigation & Control

Complete GNC Software for Every Domain

Fully distributed and scalable guidance, navigation, and control software for vehicles operating in space, air, on the ground, and in water.

Collaborative Partnership

Your Partner in Aerospace and Robotics Innovation

From consulting and licensing to joint ventures — flexible business models designed to meet you where you are and grow with your project.

Our Mission

We engineer autonomous systems for the most demanding environments — from orbital spacecraft and aerial vehicles to ground robots and underwater platforms.

10+ Years of Experience
Published Research
Aerospace & Industrial Grade

What We Do

From concept to deployment — we build complete autonomy solutions for aerospace, aerial, ground, and marine platforms.

🛰️

Aerospace & Flight Control

End-to-end design and engineering for space robotics, launch vehicles, UAVs, and flight control systems — from propulsion and avionics to custom flight controllers.

🧠

AI & Intelligent Flight Control

Proprietary ML models and AI-enhanced flight control systems — semantic segmentation, object detection, depth estimation, and adaptive control running in real time on embedded hardware.

🎛️

Guidance, Navigation & Control

Complete GNC software for autonomous vehicles operating in space, air, on the ground, and in water — from low-level actuator control to high-level mission planning.

Latest Insights

Technical deep-dives, product showcases, and industry perspectives from our team.

Designing Embedded Systems for Space Environments
April 01, 2026

Designing Embedded Systems for Space Environments

Designing electronics for space is a fundamentally different discipline than designing for terrestrial applications. On Earth, we take for granted stable temperatures, atmospheric pressure, magnetic...

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ML-Enhanced Flight Control: Bridging Classical Control and AI
March 15, 2026

ML-Enhanced Flight Control: Bridging Classical Control and AI

Classical flight control theory has served aviation well for decades. PID controllers, LQR, and model predictive control (MPC) provide stable, predictable behavior when the system...

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Vision-Guided Landing: Using Semantic Segmentation for Autonomous Runway Detection
March 01, 2026

Vision-Guided Landing: Using Semantic Segmentation for Autonomous Runway Detection

Landing is the most critical phase of any fixed-wing flight. For manned aircraft, pilots rely on a combination of visual cues, instrument landing systems (ILS),...

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Ready to accelerate your next mission?

Let's discuss how Upper can help you design, build, and deploy autonomous systems for aerospace and beyond.

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