基于磁感应的水质电导率检测系统研究
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沈阳工业大学电气工程学院,沈阳110870

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TH878+.3

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国家自然科学家基金(51377109)、辽宁省教育厅重点实验室基础研究项目(LZ2014011)支持


Study on water-quality conductivity measuring system based on magnetic induction tomography
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School of Electrical Engineering, Shenyang University of Technology, Shenyang 110870,China

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    摘要:

    根据电磁感应特性中的涡流检测原理,设计了一套电磁感应式水质检测系统,该系统根据电磁感应测量技术设计了系统激励检测线圈测量模型;以Arduino为核心处理器,利用数字频率合成技术(DDS)产生正弦激励源,基于鉴相芯片AD8302设计了相位检测器;并对系统中的信号进行处理(滤波、放大)增加系统的可靠性;通过串口和液晶显示实现人机交互界面显示磁感应信号检测数据。最后,通过对不同种类的水样本实验,实验结果表明该磁感应式水质检测系统,可以测量出水样本的电导率差异,判别出水质的类别。

    Abstract:

    According to the eddy current testing principle of electromagnetic induction characteristics, this paper designs a set of electromagnetic induction water quality monitoring system. According to the electromagnetic induction measuring technical to design system excitationdetection coil measurement model, the system is in the Arduino core processor, using digital frequency synthesis (DDS) to create sinusoidal excitation source and then based on the phase AD8302 chip to design the phase detector. And processing a signal of system (filtering, amplification) to increase system reliability, through the serial port and LCD display to achieve humanmachine interface to show magnetic induction signal detection data. Finally, through testing the different types of water samples, the results show that the magnetic induction water quality monitoring system can measure conductivity differences in the water samples as well as determine the water quality categories.

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柯丽,刘晶,杜强.基于磁感应的水质电导率检测系统研究[J].国外电子测量技术,2016,35(2):70-76

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  • 在线发布日期: 2016-03-16
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