TELKOMNIKA (Telecommunication Computing Electronics and Control)
Vol 15, No 3: September 2017

Planar Microwave Sensors for Accurate Measurement of Material Characterization: A Review

Norhanani Abd Rahman (Universiti Teknikal Malaysia Melaka)
Zahriladha Zakaria (Universiti Teknikal Malaysia Melaka)
Rosemizi Abd Rahim (University Malaysia Perlis)
Yosza Dasril (Universiti Teknikal Malaysia Melaka)
Amyrul Azuan Mohd Bahar (Universiti Teknikal Malaysia Melaka)



Article Info

Publish Date
01 Sep 2017

Abstract

Microwave sensor is used in various industrial applications and requires highly accurate measurements for material properties. Conventionally, cavity waveguide perturbation, free-space transmission, open-ended coaxial probe, and planar transmission line technique have been used for characterizing materials. However, these planar transmission lines are often large and expensive to build, further restricting their use in many important applications. Thus, this technique is cost effective, easy to manufacture and due to its compact size, it has the potential to produce sensitivity and a high Q-factor for various materials. This paper reviews the common characteristics of planar transmission line and discusses numerous studies about several designs of the microstrip resonator to improve the sensor performance in terms of the sensitivity and accuracy. This technique enables its use for several industrial applications such as agriculture and quality control. It is believed that previous studies would lead to a promising solution of characterizing materials with high sensitivity, particularly in determining a high Q-factor resonator sensor.

Copyrights © 2017






Journal Info

Abbrev

TELKOMNIKA

Publisher

Subject

Computer Science & IT

Description

Submitted papers are evaluated by anonymous referees by single blind peer review for contribution, originality, relevance, and presentation. The Editor shall inform you of the results of the review as soon as possible, hopefully in 10 weeks. Please notice that because of the great number of ...