College of Electronics and Information Engineering, Sichuan University, Chengdu 610064, China.
Laboratory of Microwave Energy Applications, Yibin Industrial Technology Research Institute of Sichuan University, Yibin 644000, China.
Sensors (Basel). 2023 Apr 17;23(8):4035. doi: 10.3390/s23084035.
In this paper, an oblique aperture ridge waveguide operating at 2450 MHz is proposed, and, using the ridge waveguide, a permittivity measurement system is constructed which can measure the permittivity of materials during microwave heating. The system calculates the amplitudes of the scattering parameters by using the forward, reflected and transmitted powers of the power meters, and it reconstructs the permittivity of the material by combining the scattering parameters with an artificial neural network. The system is used to measure the complex permittivity of mixed solutions of methanol and ethanol with different ratios at room temperature, and the permittivity of methanol and ethanol with increasing temperature, from room temperature to 50 °C. The measured results are in good agreement with the reference data. The system allows simultaneous measurement of the permittivity with microwave heating and provides real-time, rapid changes in the permittivity during heating, avoiding thermal runaway and providing a reference for applications of microwave energy in the chemical industry.
本文提出了一种工作在 2450MHz 的斜角孔径脊波导,并利用脊波导构建了介电常数测量系统,该系统可在微波加热过程中测量材料的介电常数。该系统通过功率计的正向、反向和传输功率来计算散射参数的幅度,并通过将散射参数与人工神经网络相结合来重构材料的介电常数。该系统用于测量室温下不同比例甲醇和乙醇混合溶液以及甲醇和乙醇的复介电常数,测量温度从室温升高至 50°C。测量结果与参考数据吻合较好。该系统允许在微波加热的同时测量介电常数,并提供加热过程中介电常数的实时、快速变化,避免热失控,并为微波能在化工行业的应用提供参考。