Memon Muhammad Usman, Lim Sungjoon
School of Electrical and Electronics Engineering, Chung-Ang University, 84 Heukseok-ro, Dongjak-gu, Seoul 156-756, Korea.
Sensors (Basel). 2016 Oct 31;16(11):1829. doi: 10.3390/s16111829.
This research proposes a substrate-integrated waveguide (SIW) cavity sensor to detect several chemicals using the millimeter-wave frequency range. The frequency response of the presented SIW sensor is switched by filling a very small quantity of chemical inside of the fluidic channel, which also causes a difference in the effective permittivity. The fluidic channel on this structure is either empty or filled with a chemical; when it is empty the structure resonates at 17.08 GHz. There is always a different resonant frequency when any chemical is injected into the fluidic channel. The maximum amount of chemical after injection is held in the center of the SIW structure, which has the maximum magnitude of the electric field distribution. Thus, the objective of sensing chemicals in this research is achieved by perturbing the electric fields of the SIW structure.
本研究提出了一种衬底集成波导(SIW)腔传感器,用于在毫米波频率范围内检测多种化学物质。通过在流体通道内填充极少量的化学物质来切换所展示的SIW传感器的频率响应,这也会导致有效介电常数的差异。该结构上的流体通道要么为空,要么充满化学物质;当为空时,该结构在17.08GHz处谐振。当向流体通道中注入任何化学物质时,总会有不同的谐振频率。注入后化学物质的最大量位于SIW结构的中心,该中心具有最大的电场分布幅度。因此,本研究中检测化学物质的目标是通过扰动SIW结构的电场来实现的。