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Designing a resilient, threat-aware, future-ready network? Let our experts help you deploy the right FOS solution. Built to sense, protect, and predict.
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Combine DAS controllers with optical fibre to transform passive networks into continuous sensing systems. Every meter becomes a monitoring point, delivering scalable, infrastructure-wide visibility without deploying additional physical sensors.
AI continuously listens to the fibre, learning the difference between routine background activity and unusual movement. Instead of flooding operators with noise, the system highlights what truly matters - from digging to intrusion - so teams can respond quickly and confidently when something out of the ordinary occurs.
Detected events are geo-located precisely along the fibre route. Real-time GIS mapping enables accurate visualisation, faster field dispatch, and improved situational awareness across distributed infrastructure networks.
A secure web-based dashboard provides live alerts, historical trends, and system health monitoring. Remote accessibility ensures continuous visibility and informed decision-making across multiple infrastructure locations.
Beyond telecom, FOS safeguards oil & gas pipelines, power lines, and perimeter fences from intrusion or damage.
Our AI engine continuously learns from real-world vibration patterns across your fibre routes. It doesn’t just detect activity, it understands it. From routine environmental noise to high-risk threats, the system intelligently classifies events so you see only what truly matters, not background clutter.
When unmanned digging or intrusion begins, every second counts. Our system detects, analyzes, and alerts you in under five seconds, giving your teams the critical time needed to intervene before fiber damage, service outages, or safety risks occur.
Reliability is non-negotiable. With advanced AI/ML classification, our FOS solution maintains a false alarm rate of less than 1%. That means fewer distractions, higher operator confidence, and faster response to genuine threats, without alert fatigue.
Our AI engine continuously learns from real-world vibration patterns across your fiber routes. It doesn’t just detect activity, it understands it. From routine environmental noise to high-risk threats, the system intelligently classifies events so you see only what truly matters, not background clutter
When unmanned digging or intrusion begins, every second counts. Our system detects, analyzes, and alerts you in under five seconds, giving your teams the critical time needed to intervene before fiber damage, service outages, or safety risks occur.
Reliability is non-negotiable. With advanced AI/ML classification, our FOS solution maintains a false alarm rate of less than 1%. That means fewer distractions, higher operator confidence, and faster response to genuine threats, without alert fatigue.
Designing a resilient, threat-aware, future-ready network?
Let our experts help you deploy the right FOS solution. Built to sense, protect, and predict.
Designing a resilient, threat-aware, future-ready network? Let our experts help you deploy the right FOS solution. Built to sense, protect, and predict.
Designing a resilient, threat-aware, future-ready network? Let our experts help you deploy the right FOS solution. Built to sense, protect, and predict.
Fibre optics refers to the technology and the medium associated with the transmission of data as light pulses along a ultrapure strand of glass, which is a thin as a human hair.
Due to increasing data demands, there's a dire need to create new fibre deep networks and data centres, which would encourage faster 5G and FTTH adoption.
The world is getting smarter and connected. Converged and high bandwidth application networks have unique challenges which make high performance connectivity a top priority.
When light travels through a fibre, tiny amounts of light scatter back due to natural imperfections in the fibre.This scattering is known as Rayleigh scattering. External disturbances like digging, footsteps, traffic etc. creates vibrations which will lead to change in this scattering pattern.Detecting this scattered light in real time helps to detect the vibrations.This is called Distributed Acoustic Sensing (DAS) technology .
STL developed AI/ML algorithms analyze vibration patterns, intensity, and frequency.Vibration analysis results of a passing truck looks different from a digging activity. The system classifies vibrations into categories, helping operators respond only to genuine threats and harmless vibrations are discarded.
Yes. FOS continuously monitors thousands of points along a fiber. Each event is mapped to its exact location, allowing simultaneous detection and reporting of multiple disturbances at the same time.
Backscattered Raw vibration signals are processed by DAS and AI engines. They are converted into alerts,which are displayed in STL dashboards. alerts tagged to GIS maps that will show what , where ,and when it happened.
A single DAS unit can monitor up to 80km of fiber in real time. One DAS unit has 2 channels,each channel can cover 40km of fiber length.Both channels will cover 80km to both directions.For longer distances, multiple units can be used in a networked fashion.
No. The existing optical fiber itself becomes the sensor. Only a DAS hardware unit at one end is required, eliminating the need for thousands of separate sensing devices in the field.
Yes. Digging creates distinct vibration patterns. DAS unit detects them instantly, pinpoints the location, and sends alerts before damage occurs, preventing costly service disruptions.
FOS acts as an invisible perimeter security. Optical fiber can be deployed in overground perimeters like fences/walls or buried underground.Fiber in Overhead perimeters will help to detect,Climbing,cutting or any other physical intrusion activities.Underground Fiber can detect footsteps, digging,tunneling,vehicle movement or an unauthorised physical movement near the perimeter.All these events are detected and mapped, providing real-time alerts for intrusion.
Yes. Rail operators use FOS to detect train movement, track faults,animal movement and trespassing. It improves passenger safety, prevents accidents, and optimizes maintenance planning.
FOS helps monitor traffic, detect underground works, ensure public safety, and secure utilities. By turning existing city fiber networks into sensors, it makes urban systems more intelligent and responsive.
Since it uses the existing fiber network, FOS eliminates the need for thousands of physical sensors. Real-time detection reduces downtime, theft, and repair costs, delivering massive savings over time.
Operators need basic training to interpret dashboards and alerts. Most of the complexity is handled by AI, making the system user-friendly and quick to adopt.STL will provide necessary training to operators to monitor and maintain the system.
Highly scalable. Multiple DAS units can be deployed along a long-haul fiber route. They can be centrally managed, making it possible to monitor hundreds of kilometers seamlessly.
Distributed Acoustic Sensing (DAS) Interrogator System
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