A novel optical mechanism and scheme of Raman optical time domain reflection (ROTDR) for improving achievable spatial resolution is proposed. Herein, the Raman backscattering characteristic of the optical fiber based on the amplified spontaneous emission (ASE) detection is first theoretically analyzed. Then, the propagation model of the ASE Raman anti‐Stokes trace is established. Based on the propagation model, the time domain difference reconstruction is applied to the whole collected Raman anti‐Stokes trace. The reconstructed Raman anti‐Stokes signal and ASE signal, which are first proposed here, show a distinct correlation characteristic. For this characteristic, a higher signal‐to‐noise ratio (SNR) demodulation scheme, named compression...
We experimentally investigate the benefits of a new optical pulse coding technique for long-range, m...
A high resolution optical time domain reflectometry (OTDR) based on an all-fiber chaotic source is d...
This paper demonstrates a novel method of increasing the range of a 1.65µm optical time domain refle...
Optical Time Domain Reflectometry (OTDR) is an efficient and reliable technique for locating fibre f...
M.Ing. (Electrical and Electronic Engineering)A distributed temperature fiber sensor based on the ra...
The behaviour of distributed temperature sensors based on spontaneous Raman scattering and coded OTD...
We study the stimulated Raman backscattering of a quasi monochromatic light pulse travelling in a bi...
Abstract This paper presents a theoretical and computational study on the analysis of parameters for...
We propose a high-resolution optical time domain reflectometry (OTDR) based on an all-fiber supercon...
An alternative for commercial Raman-Optical Time Domain Reflectometry (OTDR) distributed temperature...
Image processing is proposed and experimentally demonstrated to improve the capabilities of Raman di...
Coding technique has long been investigated as a solution to improve the signal-to-noise ratio (SNR)...
In this study, the authors present an experimental and theoretical description of the use of first o...
Raman scattering in optical fibres provides a means of measuring continuous temperature distribution...
A technique for increasing the dynamic of a 1.65µm OTDR system has been demonstrated. This is achiev...
We experimentally investigate the benefits of a new optical pulse coding technique for long-range, m...
A high resolution optical time domain reflectometry (OTDR) based on an all-fiber chaotic source is d...
This paper demonstrates a novel method of increasing the range of a 1.65µm optical time domain refle...
Optical Time Domain Reflectometry (OTDR) is an efficient and reliable technique for locating fibre f...
M.Ing. (Electrical and Electronic Engineering)A distributed temperature fiber sensor based on the ra...
The behaviour of distributed temperature sensors based on spontaneous Raman scattering and coded OTD...
We study the stimulated Raman backscattering of a quasi monochromatic light pulse travelling in a bi...
Abstract This paper presents a theoretical and computational study on the analysis of parameters for...
We propose a high-resolution optical time domain reflectometry (OTDR) based on an all-fiber supercon...
An alternative for commercial Raman-Optical Time Domain Reflectometry (OTDR) distributed temperature...
Image processing is proposed and experimentally demonstrated to improve the capabilities of Raman di...
Coding technique has long been investigated as a solution to improve the signal-to-noise ratio (SNR)...
In this study, the authors present an experimental and theoretical description of the use of first o...
Raman scattering in optical fibres provides a means of measuring continuous temperature distribution...
A technique for increasing the dynamic of a 1.65µm OTDR system has been demonstrated. This is achiev...
We experimentally investigate the benefits of a new optical pulse coding technique for long-range, m...
A high resolution optical time domain reflectometry (OTDR) based on an all-fiber chaotic source is d...
This paper demonstrates a novel method of increasing the range of a 1.65µm optical time domain refle...