Coordination intelligence for teams of uncrewed aircraft.

Aerodyne AI builds the mission-planning and coordination software that keeps many aircraft working together toward the mission — especially when communications degrade and conditions turn adversarial. We build software, not aircraft: our engine is platform-agnostic and augments the autopilot, ground-control, and airspace systems an operator already has.

Founded 2026 · Delaware C-Corporation Glen Cove, New York Eight U.S. provisional patent applications filed (2026) Company-funded research program
What we build

Software that keeps a fleet coordinated when the network will not cooperate

Modern uncrewed aircraft have made it inexpensive to put many drones in the air. What remains hard is keeping them coordinated once conditions degrade — over larger areas, beyond reliable line-of-sight communication, against interference. Links drop, the shared picture goes stale, and conventional coordination stalls or wastes effort re-covering the same ground.

Our coordination engine hands off gracefully across three tiers instead of collapsing:

Coordinated. Full shared picture — aircraft plan together for best coverage of the mission.
Local sensing. Links degraded — each aircraft acts on what it can sense locally, still on-mission.
Autonomous. Communications lost — aircraft continue useful work within operator-delegated bounds rather than stalling.
How it works

Planning that treats the world — and the adversary — as reactive

Game-theoretic planning

Most coordination software optimizes against a world model that does not react. Our planning stack treats the engagement as two-sided: it anticipates how conditions and adversaries respond to the fleet's own choices, and plans accordingly.

Built for scale

The planner reasons over population aggregates rather than every aircraft individually, keeping planning cost nearly linear as fleets grow from tens into the hundreds of aircraft — in simulation today.

Operator on the loop

Mission intent enters as operator-adjustable priorities — mission success, survivability, target custody — and the planner's reasoning is inherently explainable: an operator can see why a course of action was chosen.

In development

AeroVigil — passive drone detection for critical infrastructure

Alongside our coordination engine, Aerodyne is developing AeroVigil: a fully passive, AI-powered drone-detection platform for correctional facilities, public-safety agencies, and critical infrastructure — a market newly opened by federal legislation authorizing drone detection at these sites.

Passive by design

AeroVigil listens — acoustic sensing and passive radio-frequency techniques that consume existing broadcast signals and emit nothing. No transmission means no spectrum licensing and no interference with your operations.

Detection and alert only

AeroVigil detects and alerts; it does not jam, disable, or intercept. Detection-only is the most conservative, clearly authorized capability tier — your team responds under your existing procedures.

Built for the hard cases

The sensor mix is designed to detect not only conventional drones but non-emitting, pre-programmed aircraft that defeat RF-only systems — and, as a development objective, to help locate the operator, not just the aircraft. Designed around U.S.-sourced, NDAA-compliant components.

AeroVigil is in active development, built on Aerodyne's 2026 patent filings and working sensor prototypes. We are preparing a limited number of no-cost 90-day pilot evaluations for qualifying facilities — contact us to discuss your site.

Research rigor

Every number we publish traces to a seeded, reproducible experiment

Aerodyne's core technology has been developed entirely under company-funded research and validated in rigorous simulation: purpose-built multi-agent simulation environments, seeded and paired statistical methodology, and results that regenerate from committed configurations. We state what our experiments show — and, just as carefully, what they do not.

We are honest about our stage: the core coordination technology is proven in simulation, and products built on it are in active development. We are actively pursuing U.S. Department of Defense small-business research opportunities and civilian applications — including infrastructure inspection beyond visual line of sight and airspace deconfliction — where coordination under unreliable communications is the binding constraint.

Team

Founded by engineers from the most unforgiving corner of software

Amardeep Mond

Founder & Chief Technology Officer

Nearly three decades designing real-time, high-throughput, low-latency distributed systems for major financial institutions — systems where correctness and speed under load decide the outcome every day. Named inventor on a U.S. patent, author of a published book on low-latency software engineering, and sole inventor on Aerodyne's 2026 provisional patent filings.

Prashant Gadodia

Co-Founder & Chief Executive Officer

Chartered accountant and operator with two decades of experience building and scaling businesses, including leading a logistics company of roughly two dozen employees with full profit-and-loss responsibility. Leads Aerodyne's commercial partnerships and program operations.

Contact

Aerodyne AI Inc. · 84 School Street, Glen Cove, New York 11542

amar@aerodyne-ai.com · prashant.gadodia@aerodyne-ai.com