基于安德森撞击原理的浮游菌采样器系统开发
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北方民族大学电气信息工程学院 银川 750021

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TP273;TH715

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国家自然科学基金(52065002)项目资助


Development of planktonic bacteria sampler system based on anderson impact principle
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School of Electrical Information Engineering,North Minzu University,Yinchuan 750021,China

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    摘要:

    在食品与生物实验室等领域,对浮游菌数量有着严格的要求,进而对浮游菌采样器提出了更高要求。为了解决浮游菌采样器的气体流量受环境影响问题,研究了具有流量校准功能的浮游菌采样器,设计了集成大气压和温湿度传感器的文丘里管结构,改进了流量补偿公式,开发了基于抗饱和积分PID(比例、积分、微分)的风机控制系统,实现了气体流量的实时补偿与闭环控制。应用VMD(变分模态分解)算法对大气压测量数据进行滤波,降低了噪声对测量结果的影响。研制了基于安德森撞击原理的浮游菌采样器样机,开展了相关实验研究。实验结果表明:经过校准后,仪器的压差示值误差在±0.5%,流量采集精度示值误差在±1%以内,符合浮游菌采样器流量校准规范的要求,克服了环境因素导致气体采集流量误差大的问题,在浮游菌采样器领域具有很好的应用价值。

    Abstract:

    In food and biological laboratories and other fields, there are strict requirements for the number of planktonic bacteria, which further puts forward higher requirements for planktonic bacteria samplers. In order to solve the problem that the gas flow of the planktonic bacteria sampler are affected by the environment factors, the planktonic bacteria sampler with flow calibration function was researched in this paper, a venturi structure integrating atmospheric pressure and temperature & humidity sensors was designed, the flow compensation formula was improved, a fan control system based on anti saturation integral PID (proportion, integral, differential) was develop, and the real-time compensation and closed-loop control of the gas flow were realized. The VMD(Variational Mode Decomposition) algorithm was applied to filter the measurement data of atmospheric pressure, which reduced the influence of noise on the measurement results. A prototype of planktonic bacteria sampler based on Anderson impact principle was developed, and relevant experimental researches were carried out. The experimental results show that the differential pressure indication error of the instrument is within ±0.5% after calibration, and the flow collection accuracy indication error is within ±1%, which meets the requirements of the flow calibration specification of planktonic bacteria sampler, overcomes the problem of large gas collection flow error caused by environmental factors, and has good application value in the field of planktonic bacteria sampler.

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张白,魏栋梁,蒋尊阳,张宏信,孙佳佳.基于安德森撞击原理的浮游菌采样器系统开发[J].电子测量技术,2023,46(19):62-68

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  • 在线发布日期: 2024-01-15
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