Serana CommsAgent
CommsAgent is an AI planning engine for mission-critical communications. Feasibility, PACE, and continuity plans across available bearers in minutes, each backed by the link budget, the binding constraint, and a patent-pending explanation of why the chosen option won.
Building a PACE plan — primary, alternate, contingency, emergency — means evaluating bearers, terminals, postures, and pass windows: a combination space that is difficult to evaluate exhaustively under time pressure. Plans take hours of expert work and go stale the moment conditions change. Status displays show what is up; they do not produce an executable, auditable plan.
Feasibility and bearer selection for any location, terminal, posture, and availability target, with every viable combination evaluated.
PACE across GEO, MEO, LEO and UHF. A degraded or lost bearer, re-planned in minutes.
Options considered, why the winner won, why each alternative lost. Replayable sessions support review and after-action analysis.
Can a 1.2m Ka terminal close 25 Mbps at this grid at 99.5%? Build a PACE plan across GEO, MEO, LEO, and UHF. What can we offer at each posture: on the move, quick halt, at the halt? The primary bearer is degraded — what's the fallback and what do we lose?
All four tiers hold a viable path.
| Tier | Path | Rate | Margin |
|---|---|---|---|
| Primary | mBird MEO Ka | 82.4 Mbps peak | 6.1 dB |
| Alternate | gBird-15 GEO Ku | 44 Mbps | 1.8 dB |
| Contingency | lBird LEO Ka | 21 Mbps | 2.4 dB |
| Emergency | uBird UHF 25 kHz | 16 kbps | 3.1 dB |
lBird shares Ka-band rain fade with the primary and is pass-dependent. gBird-15 Ku adds band diversity and is continuously visible, so it ranks ahead. lBird holds contingency.

A four-tier PACE plan across four bearer types in one question, with the reasoning behind the tier ranking opened.
All three postures close. Throughput scales with aperture: up to 4 Mbps on the move, 12 Mbps at quick halt, and 36 Mbps at the halt.
Recommendation: plan voice and C2 data on the move; hold bulk transfer for halts.
The flat-panel aperture closes at QPSK with limited margin; aperture, not power, is the binding constraint. Stepping to the 0.65m manpack triples the achievable rate.
One location, three postures, with achievable rates and the binding constraint at each.
Every answer is grounded in real engineering computation, and when there's a decision to make, Serana solves it and shows its work.
Your engineers can verify any answer. Plans can be released with confidence, complete with their reasoning.
Every planning session is fully replayable for audit and after-action review.
Options considered, why the winner won, and why each alternative lost — a patent-pending explanation, not a black box.
CommsAgent plans from what each operator is contracted to deliver: service agreements, published coverage, terminal catalogs, and current conditions. It requires no access to operator ground systems. Planners set the intent; CommsAgent evaluates every option and returns a plan they can defend. Recommendations remain human-approved; CommsAgent requires no control-plane access and never modifies operational networks.
Serana runs on your terms — wherever your data and your assurance requirements say it must.
Full operation with no outside connectivity.
A dedicated deployment inside your jurisdiction.
Every session logged and replayable end to end.
Designed for regulated and accredited operations.
An evaluation needs a representative fleet dataset; your planners have a working planning assistant within weeks. Available directly or through integration partners.
info@serana.ai