RF Analysis of Fruit and Vegetables using Equivalent Circuits Deduced from S-parameters

K. Chinen, S. Nakamoto, Ichiko Kinjo
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Abstract

We deduced equivalent circuits of the electrical properties of five fruit and eight vegetable samples from the S-parameters. The S-parameters were measured at a frequency range from 1 MHz to 100 MHz using a portable VNA and a tiny three-pin SMA probe. Admittance values calculated from the S-parameters were plotted on the admittance Smith chart, and the equivalent circuits with four parallel sub-circuits were synthesized by curve fitting. The admittance curves for the fruit and vegetable samples have two parts with different lengths split at a frequency of about 30 MHz. The admittance in the low-frequency range was determined mainly by two large capacitive and two small resistive elements of the equivalent circuit related to the plant cell wall and membrane. When the plant cell wall and membrane were decomposed by grating and 30µm-filtering, the specific part of the admittance curve was eliminated, and the admittance value increased. The measured and calculated admittance curves were in good agreement. About 30 samples of plant cultivars were classified as fruit and vegetables according to four criteria deduced from the RF analysis. S-parameter spectroscopy (SPS) is an effective analytical method for evaluating the electrical properties of plant tissues.
基于s参数推导等效电路的果蔬射频分析
从s参数推导出5种水果和8种蔬菜样品的电学特性等效电路。使用便携式VNA和微型三针SMA探头在1 MHz至100 MHz的频率范围内测量s参数。根据s参数计算出的导纳值绘制在导纳史密斯图上,并通过曲线拟合合成了具有4个平行子电路的等效电路。水果和蔬菜样品的导纳曲线有两个不同长度的部分,在大约30 MHz的频率下分裂。低频导纳主要由与植物细胞壁和细胞膜有关的等效电路中的两个大电容元件和两个小电阻元件决定。通过光栅和30µm滤波对植物细胞壁和细胞膜进行分解,消除了导纳曲线的特定部分,使导纳值增大。测得的导纳曲线与计算的导纳曲线吻合较好。根据射频分析得出的4个标准,将30个植物品种分类为水果和蔬菜。s参数光谱(SPS)是评价植物组织电学特性的有效分析方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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