We present a continuous liquid level sensing system for both room temperature and cryogenic fluids with millimeter spatial resolution. Change of in-fiber Rayleigh backscattering signal from the distinct thermal response of the heated sensing fiber in liquid and in air were interrogated and spatially resolved using the optical frequency domain reflectometry. Both electrical and optical heating techniques were investigated for cryogenic liquid applications at 4 K, 77 K, and the room temperature. The successful combination of self-heated fiber and wavelength-swept Rayleigh scattering interferometry provides, for the first time to our best knowledge, a truly distributed fuel gauge with high spatial resolution for cryogenic fuel storage, transpo...
While ever higher resolution temperature sensing is of demand in research and industry, the cost of ...
We present an innovative architecture of a Rayleigh-based optical fibre sensor for the monitoring of...
Optical fiber based sensors offer several important advantages over electronic sensors, including lo...
We present a continuous liquid level sensing system for both room temperature and cryogenic fluids w...
We present an array of aluminum-coated fiber Bragg gratings (FBGs) inscribed in high-attenuation fib...
We present an array of aluminum-coated fiber Bragg gratings (FBGs) inscribed in high-attenuation fib...
We present a liquid level sensing system for cryogenic fluids based on an array of aluminum-coated f...
We present a new design of an all-fiber sensor system to enhance the low-temperature sensing perform...
We present a liquid level sensing system for cryogenic fluids based on an array of aluminum-coated f...
Liquid level sensor with large sensing range and high-resolution is essential for the application of...
The principles of operation, the design, and performance of a fiber-optic temperature-distribution s...
A new fibre sensor which measures temperature-distribution is proposed. The sensor uses optical-time...
This letter demonstrates an approach for tuning fiber Bragg grating sensors with optical energy carr...
In this work, the performance of five different fiber optic sensors at cryogenic temperatures has be...
While ever higher resolution temperature sensing is of demand in research and industry, the cost of ...
We present an innovative architecture of a Rayleigh-based optical fibre sensor for the monitoring of...
Optical fiber based sensors offer several important advantages over electronic sensors, including lo...
We present a continuous liquid level sensing system for both room temperature and cryogenic fluids w...
We present an array of aluminum-coated fiber Bragg gratings (FBGs) inscribed in high-attenuation fib...
We present an array of aluminum-coated fiber Bragg gratings (FBGs) inscribed in high-attenuation fib...
We present a liquid level sensing system for cryogenic fluids based on an array of aluminum-coated f...
We present a new design of an all-fiber sensor system to enhance the low-temperature sensing perform...
We present a liquid level sensing system for cryogenic fluids based on an array of aluminum-coated f...
Liquid level sensor with large sensing range and high-resolution is essential for the application of...
The principles of operation, the design, and performance of a fiber-optic temperature-distribution s...
A new fibre sensor which measures temperature-distribution is proposed. The sensor uses optical-time...
This letter demonstrates an approach for tuning fiber Bragg grating sensors with optical energy carr...
In this work, the performance of five different fiber optic sensors at cryogenic temperatures has be...
While ever higher resolution temperature sensing is of demand in research and industry, the cost of ...
We present an innovative architecture of a Rayleigh-based optical fibre sensor for the monitoring of...
Optical fiber based sensors offer several important advantages over electronic sensors, including lo...