Streamlit - Deterministic microsecond execution engine for edge compute

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ADEL 2.0 (Autonomous Deterministic Executive Layer) is a bare-metal C++/Rust engine engineered for zero-jitter, microsecond edge execution. Originally built for satellite collision avoidance and dynamic atmospheric drag compensation, ADEL 2.0 optimizes microsecond pathfinding and autonomous control loops for robotics, BVLOS drones, unmanned marine vessels, and high-throughput real-time hardware systems under severe memory constraints.

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Hi Product Hunt! I'm Annesha Mazumdar, Founder & CEO of Space Nova. We originally architected ADEL 2.0 as a bare-metal, containerized C++/Rust engine for microsecond satellite collision dynamics under severe edge constraints. However, we realized its zero-jitter execution model solves a core bottleneck for terrestrial edge hardware: autonomous drones (BVLOS), robotics, and high-throughput real-time controllers. You can interact with our live benchmark visualizer here: We are onboarding technical leads for Hardware-in-the-Loop (HIL) benchmarking pilots to evaluate ADEL 2.0 against existing baselines. I’d love your feedback and to answer any technical questions!

Hi Product Hunt! I'm Annesha Mazumdar, Founder & CEO of Space Nova.

We originally architected ADEL 2.0 (Autonomous Deterministic Executive Layer) as a bare-metal, containerized C++/Rust engine for microsecond satellite collision dynamics under severe edge constraints. However, we quickly realized its zero-jitter execution model solves a core bottleneck for terrestrial edge hardware: autonomous drones (BVLOS), robotics, and high-throughput real-time controllers.

You can inspect and interact with our live benchmark visualizer here:

We are actively onboarding technical leads and hardware teams for 15-to-30-day Hardware-in-the-Loop (HIL) benchmarking pilots to evaluate ADEL 2.0 against existing baselines.

I’d love your feedback, thoughts on our deterministic architecture, or to answer any technical questions!