Microwave Research Group, Centre for Telecommunication Research and Innovation (CeTRI), Faculty of Electronics and Computer Engineering, Universiti Teknikal Malaysia Melaka (UTeM), Durian Tunggal, Melaka 76100, Malaysia.
Electrical Engineering Department, Jouf University, Sakaka, Aljouf 72388, Saudi Arabia.
Sensors (Basel). 2021 Mar 24;21(7):2267. doi: 10.3390/s21072267.
Recent developments in the field of microwave planar sensors have led to a renewed interest in industrial, chemical, biological and medical applications that are capable of performing real-time and non-invasive measurement of material properties. Among the plausible advantages of microwave planar sensors is that they have a compact size, a low cost and the ease of fabrication and integration compared to prevailing sensors. However, some of their main drawbacks can be considered that restrict their usage and limit the range of applications such as their sensitivity and selectivity. The development of high-sensitivity microwave planar sensors is required for highly accurate complex permittivity measurements to monitor the small variations among different material samples. Therefore, the purpose of this paper is to review recent research on the development of microwave planar sensors and further challenges of their sensitivity and selectivity. Furthermore, the techniques of the complex permittivity extraction (real and imaginary parts) are discussed based on the different approaches of mathematical models. The outcomes of this review may facilitate improvements of and an alternative solution for the enhancement of microwave planar sensors' normalized sensitivity for material characterization, especially in biochemical and beverage industry applications.
近年来,微波平面传感器领域的发展使得人们对能够实时、非侵入式测量材料特性的工业、化学、生物和医学应用重新产生了兴趣。与现有的传感器相比,微波平面传感器具有体积小、成本低、易于制造和集成等优势。然而,它们的一些主要缺点也限制了其应用范围和灵敏度、选择性等方面的应用。为了实现对不同材料样品之间微小变化的高精度复杂介电常数测量,需要开发高灵敏度的微波平面传感器。因此,本文旨在综述微波平面传感器的最新研究进展及其灵敏度和选择性的进一步挑战。此外,还根据不同的数学模型方法讨论了复介电常数提取(实部和虚部)的技术。本文的研究结果可能有助于提高微波平面传感器的归一化灵敏度,为材料特性分析提供替代解决方案,特别是在生化和饮料工业应用中。