The platform is primarily designed for telecom operators, network testing teams, infrastructure providers and security organisations that need to test how networks, monitoring systems and supporting infrastructure respond to realistic patterns of mobile activity.
Through the Decoy portal, users can configure individual devices or groups of devices and schedule activities such as voice calls, SMS messages and data sessions. These activities can be arranged to occur at specific times or according to predefined scenarios, allowing teams to reproduce realistic network usage patterns repeatedly and consistently.
A key advantage of Decoy is that the traffic originates from real Android devices operating through genuine mobile network connections. This means organisations can create authentic traffic patterns rather than relying on spoofed or simulated communications. This provides a valuable environment for testing network visibility, monitoring, detection and response capabilities.
Decoy can also be used to create controlled decoy traffic, allowing organisations to introduce realistic but deliberately planned communications into an environment. This can support the development and evaluation of network-monitoring systems, investigative capabilities and detection technologies.
With support for up to 100 devices from a single management portal, Decoy provides a scalable solution ranging from small laboratory tests through to larger network scenarios. Devices can be coordinated to communicate with one another, enabling users to create repeatable patterns of calls, SMS and data activity.
For telecom operators, Decoy provides a practical tool for network validation, capacity testing, service testing and troubleshooting. For technology developers and security organisations, it provides a means of testing whether monitoring and detection systems can identify and correctly interpret genuine mobile activity.
Ultimately, Decoy bridges the gap between simulated telecoms traffic and real-world network activity, providing organisations with a controlled, repeatable and scalable way to generate genuine mobile communications for testing and operational evaluation.
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