Design and Simulation of Capacitive Sensors of Various Geometries for Drop based Quality Analysis of Beverages

Uzma Salmaz, T. Islam
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Abstract

Capacitive sensors are easy to fabricate, compact in size, economical, and quite efficient in the detection of impurities and adulteration in fluids (like milk, fruit, vegetable juices, etc.) and other consumable food items. The change in the dielectric constant of consumable fluids due to the mixing of adulterants and preservatives can be utilized to detect the extent of adulteration and hence its quality. The change in a dielectric property of a fluid can be reflected in terms of the change in capacitance values utilizing these highly economical and compact capacitive sensors. In this work, a simulation of parallel plate capacitive sensors of different sizes and configurations using copper material is done. Also, cross capacitive sensor with brass material is simulated in various shapes of electrodes with different dimensions. The shift in the base value of capacitances due to a milk sample drop is acquired for the sensors to comment on their sensitivity. It is found that for the cross-capacitive sensor if the dimension is close to the size of the drop the maximum change in capacitance is obtained. For the parallel plate sensor by changing the size of the electrodes the base value and sensitivity change to an extent till the optimum value of dimensions for which sensitivity is maximum.
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基于液滴的饮料质量分析中不同几何形状电容式传感器的设计与仿真
电容式传感器易于制造,尺寸紧凑,经济,并且在检测液体(如牛奶,水果,蔬菜汁等)和其他消耗性食品中的杂质和掺假方面非常有效。由于掺假剂和防腐剂的混合而引起的耗材流体介电常数的变化可用于检测掺假的程度,从而检测其质量。利用这些高度经济和紧凑的电容传感器,可以通过电容值的变化来反映流体介电特性的变化。本文采用铜材料对不同尺寸和结构的并联板电容式传感器进行了仿真研究。同时,对黄铜材料的交叉电容式传感器进行了不同尺寸、不同形状电极的模拟。由于牛奶样品的下降电容的基本值的变化是为传感器评论他们的灵敏度。研究发现,对于交叉电容传感器,当尺寸接近液滴尺寸时,电容变化最大。对于平行板传感器,通过改变电极的尺寸,基值和灵敏度在一定程度上发生变化,直到灵敏度最大的尺寸的最佳值。
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