In this paper, a new design of microwave sensor with high Q-factor for liquid characterization is analyzed and investigated. The new microwave sensor is based on a gap waveguide cavity resonator (GWCR). The GWCR consists of upper plate, lower plate and array of pins on the lower plate. The liquid under test (LUT) is characterized by placing it inside the GWCR where the electric field concentrates using a quartz capillary that is passing through microfluidic channels. The results show that the proposed sensor has a high Q-factor of 4832. Moreover, the proposed sensor has the ability to characterize different typesof liquids such as oils, ethanol, methanol and distilled water. The polynomial fitting method is used to extract the equation of ...
A method for the wireless evaluation of the dielectric permittivity of liquids is presented. The use...
In this paper, a new type of microwave fluidic sensor using enhanced coupling peripheral microstrip ...
Online monitoring of Water-Liquid Ratio (WLR) in multiphase flow is key in petroleum production, pro...
In this paper, a new design of microwave sensor with high Q-factor for liquid characterization is an...
In this paper, a novel microwave sensor with high Q-factor for oil sensing is analyzed and investiga...
In this article, a highly sensitive and compact microwave sensor with quality factor (Q ≈ 3000) is p...
Liquid is one of the primary state of matter that has so much importance in our lives. The fact that...
In this paper, a novel planar microfluidic microwave sensor based on a Substrate Integrated Waveguid...
A miniaturized 2.4 GHz re-entrant cavity has been designed, manufactured and tested as a sensor for ...
In this letter, we propose a microwave sensor for nondestructive, volume-independent liquid characte...
In this paper, a new type of microwave microfluidic sensor is proposed to detect and determine the d...
The conventional resonant-type microwave microfluidic sensors made of planar resonators suffer from ...
This paper reports on a technique of using a very high quality factor cylindrical dielectric resonat...
Dielectric characterization is very essential before the material can be utilized in designing micro...
A dual mode, microstrip, microfluidic sensor was designed, built, and tested, which has the ability ...
A method for the wireless evaluation of the dielectric permittivity of liquids is presented. The use...
In this paper, a new type of microwave fluidic sensor using enhanced coupling peripheral microstrip ...
Online monitoring of Water-Liquid Ratio (WLR) in multiphase flow is key in petroleum production, pro...
In this paper, a new design of microwave sensor with high Q-factor for liquid characterization is an...
In this paper, a novel microwave sensor with high Q-factor for oil sensing is analyzed and investiga...
In this article, a highly sensitive and compact microwave sensor with quality factor (Q ≈ 3000) is p...
Liquid is one of the primary state of matter that has so much importance in our lives. The fact that...
In this paper, a novel planar microfluidic microwave sensor based on a Substrate Integrated Waveguid...
A miniaturized 2.4 GHz re-entrant cavity has been designed, manufactured and tested as a sensor for ...
In this letter, we propose a microwave sensor for nondestructive, volume-independent liquid characte...
In this paper, a new type of microwave microfluidic sensor is proposed to detect and determine the d...
The conventional resonant-type microwave microfluidic sensors made of planar resonators suffer from ...
This paper reports on a technique of using a very high quality factor cylindrical dielectric resonat...
Dielectric characterization is very essential before the material can be utilized in designing micro...
A dual mode, microstrip, microfluidic sensor was designed, built, and tested, which has the ability ...
A method for the wireless evaluation of the dielectric permittivity of liquids is presented. The use...
In this paper, a new type of microwave fluidic sensor using enhanced coupling peripheral microstrip ...
Online monitoring of Water-Liquid Ratio (WLR) in multiphase flow is key in petroleum production, pro...