Intelligent Automation for tactical radio MANET network planning
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Products & Services
ICS Monitoring SDRN Control
ATDI South Pacific Pty Ltd
ICS Monitoring is a flexible network monitoring solution that allows users to better understand the impact of interference on their network and others. It is compatible with leading hardware monitoring equipment suppliers and allows the user to work with different hardware suppliers simultaneously. ICS Monitoring manages a variety of measurement data and features an automatic post-processing function for real-time data streams. It forms part of our spectrum management solution and is fully compatible with ICS Manager.
ICS Monitoring can be used to assess spectrum use, monitor emissions and regulate the control of license emissions. It performs tasks in accordance with radio license regulations and verifies compliance with the frequency allocation conditions, frequency use and channel occupancy. ICS Monitoring can be used to generate interference case studies and search for unauthorised emissions.
ICS Monitoring can be used to assess spectrum use, monitor emissions and regulate the control of license emissions. It performs tasks in accordance with radio license regulations and verifies compliance with the frequency allocation conditions, frequency use and channel occupancy. ICS Monitoring can be used to generate interference case studies and search for unauthorised emissions.
HTZ Warfare
ATDI South Pacific Pty Ltd
The only RF simulation software, focused exclusively on military and defence communication networks. For Army, Air Force and Navy.
Covering all military communications from VHF/UHF, HF, ground to ground, ground to air comms, every wireless technology from kHz to THz.
Complete electronic warfare simulations through radar coverage, direction finder optimization, jamming coverage and efficiency, on the move jamming, CRPA drone jamming, counter drone/UAV network planning, flight path analysis, MANET networks, etc.
With HTZ Warfare, you can simulate any electronic warfare environment for tactical mission planning, offensive or defensive electromagnetic spectrum operations.
Boasting a massive library of almost 50 radio propagation models and global cartographic data for immediate, out-of-the-box RF simulations.
Powerful, comprehensive, and complete!
Covering all military communications from VHF/UHF, HF, ground to ground, ground to air comms, every wireless technology from kHz to THz.
Complete electronic warfare simulations through radar coverage, direction finder optimization, jamming coverage and efficiency, on the move jamming, CRPA drone jamming, counter drone/UAV network planning, flight path analysis, MANET networks, etc.
With HTZ Warfare, you can simulate any electronic warfare environment for tactical mission planning, offensive or defensive electromagnetic spectrum operations.
Boasting a massive library of almost 50 radio propagation models and global cartographic data for immediate, out-of-the-box RF simulations.
Powerful, comprehensive, and complete!
HTZ Web API
ATDI South Pacific Pty Ltd
Web APIs play a pivotal role in integrating diverse systems allowing different applications to collaborate seamlessly across the web. By automating complex tasks the complexity of network deployments is removed. HTZ Web API embraces RESTful API principles and leverages standard HTTP methods, recognised for their simplicity and scalability. It supports JSON and XML formats to structure data, ensuring the API responses are lightweight and easily readable.
HTZ integrates seamlessly into third-party solutions, working as a backend spectrum engine. By adding a customised user interface, the end user can request and receive data via the API and support task automation. Requests are combined to fulfil end-user requirements or specific use scenarios.
The Web API functionality enables real-time network insights by sharing dynamic and up-to-the-minute data for informed decision-making. The API transmits real-time information like power consumption and station status through the network monitoring system. This data is then used to visualise its impact on coverage, overlay reference signals, and assess the received radio signal strength (RSSI) in specific regions. Additional information encompasses optimal server information, overlap areas, and the number of received channels. The collaborative sharing of this data ensures the adaptive reallocation of the network, acting as a security measure to protect sensitive systems and information in secure locations.
Benefits
Enhanced Accuracy: the API shared cartographic engine minimises errors, ensuring precise calculations for terrain and positioning data.
Advanced Modelling: supports complex 3D terrain and propagation analysis, delivering reliable results across various applications.
Customisable: Offers extensive custom functions to tailor solutions for specific project needs and to integrate diverse data sources.
High Performance: efficiently handles large-scale calculations, making it ideal for demanding projects.
Secure: provides robust data security and privacy in a secure environment, essential for sensitive information.
Versatile: supports every radiocommunication applications from terrestrial to satellite communications.
HTZ integrates seamlessly into third-party solutions, working as a backend spectrum engine. By adding a customised user interface, the end user can request and receive data via the API and support task automation. Requests are combined to fulfil end-user requirements or specific use scenarios.
The Web API functionality enables real-time network insights by sharing dynamic and up-to-the-minute data for informed decision-making. The API transmits real-time information like power consumption and station status through the network monitoring system. This data is then used to visualise its impact on coverage, overlay reference signals, and assess the received radio signal strength (RSSI) in specific regions. Additional information encompasses optimal server information, overlap areas, and the number of received channels. The collaborative sharing of this data ensures the adaptive reallocation of the network, acting as a security measure to protect sensitive systems and information in secure locations.
Benefits
Enhanced Accuracy: the API shared cartographic engine minimises errors, ensuring precise calculations for terrain and positioning data.
Advanced Modelling: supports complex 3D terrain and propagation analysis, delivering reliable results across various applications.
Customisable: Offers extensive custom functions to tailor solutions for specific project needs and to integrate diverse data sources.
High Performance: efficiently handles large-scale calculations, making it ideal for demanding projects.
Secure: provides robust data security and privacy in a secure environment, essential for sensitive information.
Versatile: supports every radiocommunication applications from terrestrial to satellite communications.
Description
Self-forming/self-healing networks are an exciting trend for defence mission operations. Every network node can intelligently sense and discover other nearby nodes and dynamically determine the optimal path for forwarding data packets through the network to another node. The impact of network disruption can be reduced as the network automatically heals itself as a result of the movement of nodes, changes to RF propagation and node destruction.
Set in a military context, this event will demonstrate how to create highly resilient, self-forming / self-healing tactical networks to meet today’s dynamic warfighter operations. Using automation features in HTZ Warfare, this webinar will show how the creation of transmission paths over different terrain and environmental conditions, plus re-routing of paths when nodes break down or lose connectivity, can be managed simply and quickly.
Building a resilient tactical radio network with self-healing properties can offer huge benefits, particularly in terms of end-to-end connectivity, which far exceeds that of traditional point-to-point networks. The event will also look at the automatic deployment of Range Extenders (relays) to maximise interconnections and offers an opportunity to understand the benefits of an API interface, featuring real-time tactical analysis and integration with military tactical maps.
Automating software processes has proven to improve the overall quality and consistency of results while benefitting from savings to manpower and improved operational efficiency. Sign-up today and learn how your organisation can benefit from automating radio network planning.
Set in a military context, this event will demonstrate how to create highly resilient, self-forming / self-healing tactical networks to meet today’s dynamic warfighter operations. Using automation features in HTZ Warfare, this webinar will show how the creation of transmission paths over different terrain and environmental conditions, plus re-routing of paths when nodes break down or lose connectivity, can be managed simply and quickly.
Building a resilient tactical radio network with self-healing properties can offer huge benefits, particularly in terms of end-to-end connectivity, which far exceeds that of traditional point-to-point networks. The event will also look at the automatic deployment of Range Extenders (relays) to maximise interconnections and offers an opportunity to understand the benefits of an API interface, featuring real-time tactical analysis and integration with military tactical maps.
Automating software processes has proven to improve the overall quality and consistency of results while benefitting from savings to manpower and improved operational efficiency. Sign-up today and learn how your organisation can benefit from automating radio network planning.
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