Operational RF Performance Layer

Operational RF Performance Layer

Theoretical RF performance does not survive contact with the operational environment. STEALTH is an RF intelligence platform that models, analyses, and predicts actual RF system behaviour — across terrain, atmosphere, spectrum congestion, and electromagnetic conflict — so that mission planners and system engineers understand RF performance before it fails in the field.

Theoretical RF performance does not survive contact with the operational environment. STEALTH is an RF intelligence platform that models, analyses, and predicts actual RF system behaviour — across terrain, atmosphere, spectrum congestion, and electromagnetic conflict — so that mission planners and system engineers understand RF performance before it fails in the field.

— The Problem

— The Problem

— The Problem

THEORETICAL RF ≠ OPERATIONAL RF

Every RF system ever deployed has performed differently in the field than it did on the bench. The gap between simulation and operational reality is not a minor calibration issue — it determines mission success or failure.

Every RF system ever deployed has performed differently in the field than it did on the bench. The gap between simulation and operational reality is not a minor calibration issue — it determines mission success or failure.

Every RF system ever deployed has performed differently in the field than it did on the bench. The gap between simulation and operational reality is not a minor calibration issue — it determines mission success or failure.

The simulation environment

The simulation environment

The simulation environment

What the model assumes

  • Flat terrain with uniform propagation

  • Controlled atmospheric conditions

  • No electromagnetic interference sources

  • Isolated spectral environment

  • Single-system RF operation

  • Static frequency assignments

  • Predictable antenna orientation

  • No jamming, spoofing, or spectrum denial

What the model assumes

  • Flat terrain with uniform propagation

  • Controlled atmospheric conditions

  • No electromagnetic interference sources

  • Isolated spectral environment

  • Single-system RF operation

  • Static frequency assignments

  • Predictable antenna orientation

  • No jamming, spoofing, or spectrum denial

The operational environment

What the field delivers

  • Complex terrain causing multipath and shadowing

  • Weather-induced propagation degradation

  • Dense spectrum congestion from civilian infrastructure

  • Friendly force RF conflicts and co-site interference

  • Electronic warfare suppression and denial

  • UAV communication degradation at contested altitudes

  • Radar performance variation in clutter environments

  • Communication collapse zones in urban operations

— Platform Capability

— Platform Capability

— Platform Capability

OPERATIONAL RF INTELLIGENCE

The STEALTH STARTUP integrates RF physics modelling, terrain and atmospheric data, and multi-system spectral analysis to deliver operationally accurate RF performance prediction — deployable as API, cloud, or on-premises installation.

The STEALTH STARTUP integrates RF physics modelling, terrain and atmospheric data, and multi-system spectral analysis to deliver operationally accurate RF performance prediction — deployable as API, cloud, or on-premises installation.

The STEALTH STARTUP integrates RF physics modelling, terrain and atmospheric data, and multi-system spectral analysis to deliver operationally accurate RF performance prediction — deployable as API, cloud, or on-premises installation.

01

Operational RF Coverage Analysis

High-fidelity RF propagation modelling incorporating real terrain, vegetation, and atmospheric data — producing operationally accurate coverage maps rather than theoretical free-space predictions.

02

Communication Survivability Assessment

Communication Survivability Assessment

Communication Survivability Assessment

Mission-level analysis of communication link integrity under interference, jamming, and congestion scenarios — identifying communication collapse zones before the mission, not during it.

03

RF Interaction Modelling

RF Interaction Modelling

RF Interaction Modelling

Multi-system electromagnetic interaction analysis — identifying co-site interference, friendly-force RF conflicts, and spectral deconfliction requirements across complex platform environments.

04

Mission RF Planning Layer

Mission RF Planning Layer

Mission RF Planning Layer

Pre-mission RF environment analysis integrated into operational planning workflows. Frequency plan validation, link margin assessment, and communication routing optimisation for defined mission parameters.

05

API & Platform Integration

Structured API architecture enabling integration with existing mission planning systems, C2 platforms, and UAV ground control station environments. Cloud or on-premises deployment.

06

Operational RF Effectiveness Reporting

Operational RF Effectiveness Reporting

Operational RF Effectiveness Reporting

Structured RF effectiveness outputs calibrated for operational use — not raw engineering data. Decision-support reporting for programme managers, operators, and mission planners.

— Applications

— Applications

— Applications

WHERE STEALTH OPERATES

Any platform or programme where RF performance uncertainty creates operational risk.

Any platform or programme where RF performance uncertainty creates operational risk.

Any platform or programme where RF performance uncertainty creates operational risk.

UAV Ecosystems

Pre-mission link analysis, communication corridor planning, and real-time RF performance awareness for autonomous and remotely piloted systems.

Radar Performance

Radar Performance

Radar Performance

Operational radar coverage assessment incorporating clutter environments, atmospheric ducting, and multi-platform RF interaction effects.

Electronic Warfare

Electronic Warfare

Electronic Warfare

EW mission planning support — jamming effectiveness modelling, spectrum denial zone analysis, and RF environment characterisation for EW system operators.

Tactical Communications

Tactical Communications

Tactical Communications

Tactical network RF planning in complex terrain — NLOS analysis, relay positioning, and frequency plan validation for ground and airborne communication architectures.

Counter-UAS

Detection geometry analysis, RF sensor placement optimisation, and UAS communication characterisation to support effective counter-drone RF architecture.

Multi-Platform Environments

Multi-Platform Environments

Multi-Platform Environments

Complex joint force RF environment analysis — deconfliction of radar, communication, EW, and navigation systems operating in shared spectrum.

Naval RF Environments

Naval RF Environments

Naval RF Environments

Maritime RF propagation modelling — over-sea propagation, shipborne multipath, and co-site interference for naval platform RF planning.

Autonomous Systems

Autonomous Systems

Autonomous Systems

RF communication reliability modelling for autonomous platform navigation, ensuring command and telemetry link integrity across planned operational routes.

Aerospace Communication

Aerospace Communication

Aerospace Communication

Airborne communication system RF analysis — coverage modelling, interference assessment, and spectrum coordination for aerospace platform design programmes.

DESIGN PARTNER COLLABORATION

The STEALTH STARTUP is at an advanced development stage. We are exploring a limited number of structured design-partner collaborations with organisations operating RF-complex platforms or programmes — where operational RF performance uncertainty is a current programme risk.

This is not a software purchase. Design partners contribute operational use cases, mission scenarios, and RF environment data — and in return receive early access, co-development influence, and preferential long-term programme terms.

The STEALTH STARTUP is at an advanced development stage. We are exploring a limited number of structured design-partner collaborations with organisations operating RF-complex platforms or programmes — where operational RF performance uncertainty is a current programme risk.

This is not a software purchase. Design partners contribute operational use cases, mission scenarios, and RF environment data — and in return receive early access, co-development influence, and preferential long-term programme terms.

Sathish Kumar

(India Operations (RF)| Europe Operations)

+421 950384651

sathish@meidefsec.com


Syed

(Sales and India Operations)

syed@meidefsec.com

© 2025 MEI Defence and Security. All Rights Reserved

Powered by GodXDesigns

Sathish Kumar

(India Operations (RF)| Europe Operations)

+421 950384651

sathish@meidefsec.com


Syed

(Sales and India Operations)

syed@meidefsec.com

© 2025 MEI Defence and Security.

Powered by GodXDesigns

Sathish Kumar

(India Operations (RF)| Europe Operations)

+421 950384651

sathish@meidefsec.com


Syed

(Sales and India Operations)

syed@meidefsec.com

© 2025 MEI Defence and Security. All Rights Reserved

Powered by GodXDesigns