ATDI delivers integrated software for Electromagnetic Spectrum Operations (EMSO), bringing three core domains together within a common operational environment.
SPECTRUM MANAGEMENT | Coordinate and Control
TACTICAL MISSION PLANNING | Plan and Optimise
ELECTRONIC WARFARE & COMINT | Detect, Assess and Respond
Together, these capabilities support spectrum-dependent operations across land, sea, air and space, from strategic preparation through tactical execution.
The electromagnetic spectrum is fundamental to communications, sensing, command and control, and electronic warfare. In contested environments, defence organisations need to understand spectrum use, coordinate spectrum-dependent systems and respond as electromagnetic conditions change.
ATDI brings together three core EMSO domains within an integrated software environment: spectrum management, tactical mission planning, and electronic warfare and communications intelligence. Together, these capabilities connect strategic spectrum coordination with detailed RF engineering, mission modelling and operational spectrum awareness.
From national-level spectrum management to tactical communications and EW operations, ATDI helps organisations plan, analyse and adapt spectrum use across the mission lifecycle.
Manage spectrum use from strategic coordination through to operational assignment. ATDI provides the engineering and management capabilities required to coordinate spectrum-dependent systems, minimise interference and maintain effective spectrum access across joint and coalition operations.
- Station and area frequency assignment - National and international spectrum coordination
- Frequency planning and deconfliction - Interference analysis and control
- System coexistence and compatibility analysis - Spectrum database and equipment management
- Joint-force spectrum coordination - Spectrum allocation and usage analysis
Plan and optimise spectrum-dependent networks across fixed and mobile platforms operating on land, at sea, in the air and in space. Advanced RF modelling enables teams to predict communications performance, identify vulnerabilities and evaluate network options before and during operations.
HTZ Warfare supports HF, VHF and UHF communications, 2G–5G, trunked radio, Link 11/16, radar, point-to-point and point-to-multipoint links, MANET, UAV/UAS and countermeasure scenarios.
Model coverage, interference, mobility, terrain effects and network performance to optimise system deployment and maintain communications as mission requirements and electromagnetic conditions change.
Model and analyse offensive and defensive EW operations across the electromagnetic environment. ATDI combines RF engineering, spectrum monitoring and communications intelligence to support signal interception, emitter detection and localisation, and the optimisation of direction-finder and sensor deployments.
Operators can model static and mobile jamming, optimise jammer placement and power, assess interception and jamming vulnerabilities, and evaluate radar coverage and detection. Counter-UAS capabilities support intrusive drone detection and localisation, while IADS modelling enables assessment of complex integrated air defence environments.
Together, these capabilities help operators identify threats, understand vulnerabilities and evaluate response options across complex EW scenarios.
ATDI connects spectrum management, engineering and real-time monitoring to create a coordinated EMSO environment.
ICS Monitoring provides current spectrum occupancy, detected emissions and emitter information. HTZ Warfare applies advanced RF engineering and mission modelling to assess their operational impact. AI-assisted capabilities help operators interrogate spectrum intelligence and evaluate potential courses of action.
Open APIs connect sensors, databases, command systems and third-party applications, enabling organisations to integrate ATDI capabilities within existing defence architectures and automate operational workflows.
The result is a connected spectrum environment that supports planning, awareness, analysis, and informed response.
ICS Monitoring extends EMSO into the live electromagnetic environment, providing continuous spectrum observation, detection, localisation and analysis.
Visibility is power. ICS Monitoring delivers:
Commanders receive actionable intelligence enabling rapid decision-making under pressure.
Detect and analyse signals of interest to build communications intelligence and understand RF activity. Identify and locate hostile, unknown or interfering emitters across the operational environment.
HTZ Warfare models interception coverage and optimises sensor and direction-finder deployment, while integrated monitoring supports emitter detection and localisation using techniques such as TDoA, AoA, and PDoA.
HiNT adds AI-assisted engineering intelligence, helping operators interrogate RF data, interpret detected activity and assess signals and emitters of interest. Together, these capabilities improve surveillance coverage, identify gaps and build a clearer picture of RF activity across the operational area.
Model offensive and defensive jamming scenarios to understand their impact on friendly and hostile spectrum-dependent systems. HTZ Warfare models fixed and moving jammers, predicts coverage and effectiveness, and helps operators optimise jammer location, transmit power and deployment against defined mission objectives.
Direction-finder and sensor placement can be optimised to maximise detection and localisation performance, while engineering analysis identifies communications vulnerabilities and potential countermeasures. Operators can evaluate options before deployment, achieve the required jamming effect while managing unintended impacts, and adapt plans as operational conditions change.
Assess the exposure of friendly communications to interception and hostile jamming, while modelling radar coverage, detection performance and integrated air defence systems (IADS). Identify communications vulnerabilities, detection gaps, system interactions and areas of exposure to understand operational effects, assess risk and support the planning of protective measures.
Detect and locate RF emissions associated with intrusive UAV/UAS and their control systems. Assess detection coverage, localisation performance and countermeasure options to identify potential surveillance gaps, improve sensor deployment and support an effective response to drone threats.
Continuously monitor the electromagnetic environment to identify unexpected emissions and changes in established spectrum activity. Automated analysis can detect deviations, traffic surges, radio-silence events and other anomalous RF behaviour, triggering alerts and capturing supporting spectrum data.




