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Updated: Apr 15, 2026

Fiber Optic Distributed Sensors for High-resolution Temperature Field Mapping
Published on: November 7, 2016
Method for collecting thermocouple data via secured shell over a wireless local area network in real time
F Arnold1, I DeMallie1, L Florence1
1Photonics Research Center, United States Military Academy, West Point, New York 10996, USA.
This study presents a wireless apparatus for real-time, high-temperature thermocouple measurements in dynamic systems. The custom design overcomes limitations of traditional methods for rotating samples, enabling accurate data acquisition.
Area of Science:
- Instrumentation and Measurement Science
- Mechanical Engineering
- Materials Science
Background:
- Monitoring high-temperature thermocouple data from dynamic systems presents challenges.
- Traditional wired or slip-ring methods are often impractical due to noise and mechanical constraints in systems with large angular displacements.
Purpose of the Study:
- To design, build, and program a novel apparatus for real-time monitoring of high-temperature thermocouple measurements.
- To enable accurate data acquisition from dynamic systems, specifically those involving significant sample rotation.
Main Methods:
- Development of a custom apparatus integrating a Raspberry Pi mini-Linux computer and an Arduino micro-controller.
- Utilization of an Ocean Controls thermocouple multiplexer shield and k-type thermocouples for data collection.
- Implementation of wireless network technology to transmit data from a moving sample frame to a static laboratory frame.
Main Results:
- Successful construction and programming of a functional wireless data acquisition system.
- Demonstration of the apparatus's capability to overcome noise issues associated with hard-wired solutions in rotating systems.
Conclusions:
- The developed wireless apparatus provides a practical and effective solution for real-time, high-temperature thermocouple measurements in dynamic environments.
- This custom design offers a viable alternative for applications where conventional measurement techniques are not feasible.
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