Most sensing networks rely on punctual/local sensors; they thus lack the ability to spatially resolve the quantity to be monitored (e.g. a temperature or humidity profile) without relying on the deployment of numerous inline sensors. Currently, most quasi-distributed or distributed sensing technologies rely on the use of optical fibre systems. However, these are generally expensive, which limits their large-scale adoption. Recently, elongated sensing elements have been successfully used with time-domain reflectometry (TDR) to implement diffused monitoring solutions. The advantage of TDR is that it is a relatively low-cost technology, with adequate measurement accuracy and the potential to be customised to suit the specific needs of differen...
In this work, the validation and the practical implementation of a methodology exploiting a time dom...
This work presents a microwave reflectometry-based system for monitoring large concrete structures (...
This work presents a microwave reflectometry-based system for monitoring large concrete structures (...
Most sensing networks rely on punctual/local sensors; they thus lack the ability to spatially resolv...
Most sensing networks rely on punctual/local sensors, thus lacking the ability to spatially resolve ...
This book offers a comprehensive review of innovative measurement and monitoring solutions based on...
The present work describes two practical application scenarios for an innovative, diffused, low-cost...
In this work, time domain reflectometry (TDR) is used in conjunction with an innovative type of low-...
This paper describes the operating and technical details of the practical implementation of an innov...
In this work, a time domain reflectometry (TDR)-based system for continuous and diffused monitoring ...
In this work, the performance of three time domain reflectometry (TDR) instruments (with different h...
This work aims at assessing the practical applicability of an innovative time domain reflectometry (...
In this work, the validation and the practical implementation of a methodology exploiting a time dom...
This work presents a microwave reflectometry-based system for monitoring large concrete structures (...
This work presents a microwave reflectometry-based system for monitoring large concrete structures (...
Most sensing networks rely on punctual/local sensors; they thus lack the ability to spatially resolv...
Most sensing networks rely on punctual/local sensors, thus lacking the ability to spatially resolve ...
This book offers a comprehensive review of innovative measurement and monitoring solutions based on...
The present work describes two practical application scenarios for an innovative, diffused, low-cost...
In this work, time domain reflectometry (TDR) is used in conjunction with an innovative type of low-...
This paper describes the operating and technical details of the practical implementation of an innov...
In this work, a time domain reflectometry (TDR)-based system for continuous and diffused monitoring ...
In this work, the performance of three time domain reflectometry (TDR) instruments (with different h...
This work aims at assessing the practical applicability of an innovative time domain reflectometry (...
In this work, the validation and the practical implementation of a methodology exploiting a time dom...
This work presents a microwave reflectometry-based system for monitoring large concrete structures (...
This work presents a microwave reflectometry-based system for monitoring large concrete structures (...