DTS typically provides:
- Temperature versus distance profile
- Real-time thermal trends
- Hot spot detection
- Alarm zones and event localisation
Optical fiber sensing technologies are transforming how critical infrastructure is monitored by turning a standard fiber optic cable into a continuous sensor capable of measuring conditions over many kilometres.
Unlike conventional point sensors that measure at individual locations, fiber optic sensing provides distributed monitoring — delivering measurements continuously along the full length of the fiber.
Two of the most widely deployed distributed sensing technologies are:
Together, these technologies support applications ranging from fire detection and power cable monitoring to leak detection, pipeline security, perimeter protection, and infrastructure monitoring.
This guide provides an overview of how DTS and DAS work and where they are applied.
Distributed Temperature Sensing (DTS) uses an optical fiber as a continuous linear temperature sensor.
A single fiber can provide thousands of temperature measurement points over distances ranging from a few hundred metres to tens of kilometres.
Rather than installing point detection along an asset, the fiber itself becomes the sensor.
DTS operates by sending short laser pulses into an optical fiber from a measurement control unit.
As light travels through the fiber, a very small portion is naturally scattered back toward the interrogator.
This phenomenon is called backscattering.
For most DTS systems, temperature measurement is based on Raman scattering, which produces two key backscattered components:
The anti-Stokes signal changes strongly with temperature.
By analysing the ratio between these signals, the system calculates temperature at each point (typically 1 metre) along the fiber.
DTS also determines where a temperature event occurs using time-of-flight measurement.
Because light travels at a known speed in fiber – approximately 200,000 Kms per second:
Laser pulse launched
Backscattered signal returns
Return time indicates distance along the fiber
DTS is widely used for:
Distributed Acoustic Sensing (DAS) uses optical fiber as a continuous vibration and acoustic sensor.
Instead of measuring temperature, DAS detects disturbances acting on the fiber such as:
DAS typically uses coherent Rayleigh backscatter.
A control unit sends laser pulses into the fiber.
Microscopic variations naturally present in the fiber scatter light back.
When the fiber experiences vibration or strain:
The control unit continuously analyses these changes.
Like DTS, DAS uses time-of-flight principles to determine event location.
The system can identify:
This supports high probability intelligent detection with reduced nuisance alarms.
In many applications, a single fiber can support multiple sensing technologies.
Examples:
Monitoring over long distances with no gaps.
Identify where an event occurs with precision accuracy of a few metres
No power or electrics required in the field.
Works in environments challenging for conventional sensors.
One sensing infrastructure can support multiple applications.
Passive fiber sensors typically have long service life and control equipment is virtually maintenance free.
A typical system includes:
Installed along the asset to be monitored. Either multi-mode, single-mode or mixed-mode dependant on the application. Using either existing fiber or newly installed.
Typically, rack mounted in a server or equipment room. Launches laser pulses and analyses returned signals.
Provides:
Links to:
| Technology | Measures | Typical Use Cases |
|---|---|---|
| DTS | Temperature | Fire detection, leak detection, power cables |
| DAS | Vibration / acoustics | Intrusion detection, security, disturbance monitoring |
“What is the temperature, and where?”
“What is happening, where, and when?”
Fiber optic sensing continues to evolve through:
Distributed sensing is increasingly moving from specialised monitoring technology to a core element of intelligent infrastructure management.
Distributed Temperature Sensing and Distributed Acoustic Sensing use standard optical fiber to provide continuous, real-time monitoring over long distances.
DTS delivers precise distributed temperature measurement, while DAS enables distributed vibration and acoustic detection. Together, they provide powerful tools for protecting assets, improving safety, and increasing operational visibility across critical infrastructure.
Understanding how these technologies work is the first step to applying them effectively.
For application guidance or technical support on distributed fiber optic sensing technologies, please contact fotas@samm.com