: We propose a method for shape sensing that employs Rayleigh-signature domain multiplexing to simultaneously probe the fibers or cores of a shape sensing setup with a single optical frequency-domain reflectometry scan. The technique enables incrementing the measurement speed by a factor equal to the number of multiplexed fibers at the expense of an increased noise floor in accordance with the Cramér-Rao lower bound. Nonetheless, we verify that the shape reconstruction performance of the proposed method is in very good agreement with that of conventional sequential core interrogation
Unlike traditional sensing schemes which rely on discrete point sensors that perform measurements at...
Optical fibre shape sensing refers to the reconstruction of the shape of an object by using the stra...
We present a novel fiber Bragg grating array interrogation system wherein all the sensors have the s...
In this paper, a highly-sensitive distributed shape sensor based on a multicore fiber (MCF) and phas...
In this paper, we discuss the operation principles, sensing mechanisms, challenges and application ...
Shape sensing can be accomplished using optical fiber sensors through different interrogation princi...
In recent years, fiber sensing technology has become more and more important in many fields of appli...
In distributed shape sensing, the shape reconstruction error is more and more sensitive to the strai...
Distributed optical fiber sensing is a unique technology that offers unprecedented advantages and pe...
A first attempt to perform shape sensing using the BOTDR interrogation technique in a multicore fibr...
Multicore fiber (MCF) which contains more than one core in a single fiber cladding has attracted eve...
A distributed curvature sensor based on Brillouin optical time-domain reflectometry interrogation te...
This thesis presents three novel optical fibre sensor systems which monitor optical path lengths. Th...
In this Letter, we present an enhanced bandwidth distributed acoustic sensor (DAS) that uses a frequ...
A distributed and dynamic strain sensing system based on frequency-scanning phase-sensitive optical ...
Unlike traditional sensing schemes which rely on discrete point sensors that perform measurements at...
Optical fibre shape sensing refers to the reconstruction of the shape of an object by using the stra...
We present a novel fiber Bragg grating array interrogation system wherein all the sensors have the s...
In this paper, a highly-sensitive distributed shape sensor based on a multicore fiber (MCF) and phas...
In this paper, we discuss the operation principles, sensing mechanisms, challenges and application ...
Shape sensing can be accomplished using optical fiber sensors through different interrogation princi...
In recent years, fiber sensing technology has become more and more important in many fields of appli...
In distributed shape sensing, the shape reconstruction error is more and more sensitive to the strai...
Distributed optical fiber sensing is a unique technology that offers unprecedented advantages and pe...
A first attempt to perform shape sensing using the BOTDR interrogation technique in a multicore fibr...
Multicore fiber (MCF) which contains more than one core in a single fiber cladding has attracted eve...
A distributed curvature sensor based on Brillouin optical time-domain reflectometry interrogation te...
This thesis presents three novel optical fibre sensor systems which monitor optical path lengths. Th...
In this Letter, we present an enhanced bandwidth distributed acoustic sensor (DAS) that uses a frequ...
A distributed and dynamic strain sensing system based on frequency-scanning phase-sensitive optical ...
Unlike traditional sensing schemes which rely on discrete point sensors that perform measurements at...
Optical fibre shape sensing refers to the reconstruction of the shape of an object by using the stra...
We present a novel fiber Bragg grating array interrogation system wherein all the sensors have the s...