Rancang Bangun Sistem Hidung Elektronik Berbasis Sensor Gas MQ untuk Mengevaluasi Kualitas Madu

Minarni Shiddiq, Annisa Fadlillah, Sinta Afria Ningsih, Ikhsan Rahman Husein
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引用次数: 1

Abstract

Honeys come in many varieties based on quality attributes and region origin. Electronic nose systems have been adopted and used to classify honey types based on physicochemical parameters. This study was aimed to build a low cost electronic nose (e-nose) based on metal oxide semiconductor (MOS) gas sensors, and then used to evaluate the qualities of two types of honeys and one non honey based on sugar contents and pH values. Six gas sensors of MQ modules namely MQ2, MQ3, MQ4, MQ5, MQ6, MQ9, and an Arduino microcontroller were used in this system. Software of Arduino IDE, PLX-DAQ, and Python were applied to record output voltages of each sensor, saved in Excel format, and to calculate trapezoid areas respectively. Honey samples were named as A, B, and C which were. a national brand honey, a local forest honey, and date syrup respectively. The results show higher output voltages for MQ 3, MQ 4, and MQ 6 sensors. The six sensors are able to differentiate between the two honey types and non honey. Sample A has the highest trapezoid area while sample C has the lowest area. This could be caused by higher pH value of sample C.
设计一个基于MQ气体传感器的电子鼻子系统,以评估蜂蜜的质量
根据质量属性和产地,蜂蜜有很多品种。电子鼻系统已被采用并用于根据物理化学参数对蜂蜜进行分类。本研究旨在构建一种基于金属氧化物半导体(MOS)气体传感器的低成本电子鼻(电子鼻),并基于糖含量和pH值对两种蜂蜜和一种非蜂蜜的品质进行评价。本系统使用了MQ模块MQ2、MQ3、MQ4、MQ5、MQ6、MQ9六个气体传感器和一个Arduino微控制器。应用Arduino IDE、PLX-DAQ、Python软件记录各传感器输出电压,保存为Excel格式,并分别计算梯形面积。蜂蜜样品分别命名为A、B和C。分别是国家品牌蜂蜜、当地森林蜂蜜和枣糖浆。结果显示MQ 3、MQ 4和MQ 6传感器的输出电压更高。这六个传感器能够区分两种蜂蜜和非蜂蜜。样本A的梯形面积最大,而样本C的梯形面积最小。这可能是由于样品C的pH值较高。
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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