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Microfluidic Eighth-Mode Substrate-Integrated-Waveguide Antenna for Compact Ethanol Chemical Sensor Application

机译:紧凑型乙醇化学传感器应用中的微流控八模式基片集成波导天线

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In this communication, a microfluidic antenna is proposed for chemical sensor applications. An eighth-mode substrate-integrated-waveguide (EMSIW) antenna with a microfluidic channel is introduced in order to devise a compact and nondestructive chemical sensor. The frequency response of the proposed antenna is controlled by changing the nanoliter liquid in the microfluidic channel, which further results in a change in the effective dielectric constant. First, the EMSIW antenna is designed, and then the microfluidic channel is designed for nondestructive chemical sensor applications. The S-parameters of the proposed microfluidic EMSIW antenna are simulated and measured. The resonant frequency is successfully switched from 4.2 to 4.6 GHz when the concentration of ethanol is changed from 0% to 100%. The possibility of the proposed antenna to be used as an ethanol chemical sensor is demonstrated from the relationship between the resonant frequency and the concentration of ethanol.
机译:在这种通信中,提出了一种用于化学传感器应用的微流体天线。为了设计出紧凑且无损的化学传感器,引入了具有微流体通道的第八模式衬底集成波导(EMSIW)天线。通过改变微流体通道中的纳升液体来控制所提出天线的频率响应,这进一步导致有效介电常数的变化。首先,设计EMSIW天线,然后设计用于非破坏性化学传感器应用的微流体通道。仿真并测量了所提出的微流EMSIW天线的S参数。当乙醇浓度从0%变为100%时,谐振频率成功地从4.2 GHz切换到4.6 GHz。从谐振频率和乙醇浓度之间的关系证明了拟议的天线用作乙醇化学传感器的可能性。

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