In this article, a novel shaped metamaterial sensor is presented for the recognition of various oils, fluids, and chemicals using microwave frequency. The performance of the designed sensor structure has been studied both theoretically and experimentally, and it works well. A new sample holder for convenient operation is created and located just behind the designed structure. The results of this study performed better than those of prior liquids sensing studies. Various designs were explored using the Genetic Algorithm (GA), and it is embedded in the Computer Simulation Technology (CST) microwave studio, to optimize the optimal dimensions of the resonator. The suggested metamaterial sensor has a good-quality factor and sensitivity in both f...
In this paper, we present the design of a compact and highly sensitive microwave sensor based on a m...
This paper presents a microwave sensor based on a two-ports network for liquid characterizations. Th...
This thesis presents an innovative and practical approach to developing planar resonant-based spectr...
The characterisation of the cooking oils presents a significant challenge due to minor changes in th...
Metamaterial sensor which is composed of split square rings to operate in X band for liquid and micr...
A metamaterial-based resonator is presented in this paper for liquid-sensing applications. The desig...
In this study, the labyrinth resonator based chemical liquid and transformer oil condition sensor ar...
In this study, the omega shaped resonator based sensor structure by inspiring of metamaterial (MTM) ...
In this work, transmission line based metamaterial liquid sensor is proposed to determine the authen...
In this work, transmission line based metamaterial liquid sensor is proposed to determine the authen...
A novel shaped metamaterial sensor application which is designed to operate in X band is proposed. A...
In this paper, we present, design and analyze a metamaterial (MTM) based sensor to distinguish diffe...
A novel shaped metamaterial sensor application which is designed to operate in X band is proposed. A...
In this research paper, a new reflected mirror rectangular split-ring resonator-shaped metamaterial ...
Recently, the interest of microwave signals for biological detection applications using metamaterial...
In this paper, we present the design of a compact and highly sensitive microwave sensor based on a m...
This paper presents a microwave sensor based on a two-ports network for liquid characterizations. Th...
This thesis presents an innovative and practical approach to developing planar resonant-based spectr...
The characterisation of the cooking oils presents a significant challenge due to minor changes in th...
Metamaterial sensor which is composed of split square rings to operate in X band for liquid and micr...
A metamaterial-based resonator is presented in this paper for liquid-sensing applications. The desig...
In this study, the labyrinth resonator based chemical liquid and transformer oil condition sensor ar...
In this study, the omega shaped resonator based sensor structure by inspiring of metamaterial (MTM) ...
In this work, transmission line based metamaterial liquid sensor is proposed to determine the authen...
In this work, transmission line based metamaterial liquid sensor is proposed to determine the authen...
A novel shaped metamaterial sensor application which is designed to operate in X band is proposed. A...
In this paper, we present, design and analyze a metamaterial (MTM) based sensor to distinguish diffe...
A novel shaped metamaterial sensor application which is designed to operate in X band is proposed. A...
In this research paper, a new reflected mirror rectangular split-ring resonator-shaped metamaterial ...
Recently, the interest of microwave signals for biological detection applications using metamaterial...
In this paper, we present the design of a compact and highly sensitive microwave sensor based on a m...
This paper presents a microwave sensor based on a two-ports network for liquid characterizations. Th...
This thesis presents an innovative and practical approach to developing planar resonant-based spectr...