Data monitoring for indirect metering terminal of membrane gas measure device based on sensor network

IF 0.6 Q4 ENGINEERING, MECHANICAL Journal of Measurements in Engineering Pub Date : 2023-06-26 DOI:10.21595/jme.2023.23317
L. Gao, Lulu Che
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Abstract

In order to improve the data monitoring and information management capabilities of membrane gas measure device indirect metering terminals, a sensor network based data monitoring method for membrane gas measure device indirect metering terminals was proposed. The distributed and centralized sensor network node deployment method is used to achieve data collection for membrane gas measure device indirect metering terminals, and the collected membrane gas measure device indirect metering terminal data is segmented, fused, and reorganized. The distributed energy storage and constant volume two-level optimal control method is used to analyze the operation status of gas measure device indirect metering terminal data. The ZigBee networking protocol is used to build a network structure model for gas measure device indirect metering terminals, an integrated high-precision temperature and pressure sensor arranged parallel to the inner wall of the valve body is used to detect the temperature and pressure at the outlet of the membrane gas measure device. The temperature information is stored in DSP, and the user's expenses, system operation and maintenance, and peak shaving and valley filling benefits are taken as the parameters of the energy storage and constant volume outer layer model. The output stability of the indirect metering terminal data of the membrane gas measure device is analyzed in the high switching frequency mode. Combined with adaptive parameter adjustment, the indirect metering terminal control and data dynamic collection of the membrane gas measure device are realized. Realize dynamic monitoring of metering terminal data in wireless sensor network networking control mode. The test results show that using this method for indirect metering terminal data monitoring of gas measure devices has good output stability, strong dynamic fusion of sensing information, reduced metering errors, and improved metering accuracy of gas measure devices.
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基于传感器网络的膜式气体测量装置间接计量终端数据监控
为了提高膜气测量装置间接计量终端的数据监测和信息管理能力,提出了一种基于传感器网络的膜气测量装置间接计量终端数据监测方法。采用分布式集中式传感器网络节点部署方法,实现对膜气计量装置间接计量终端的数据采集,并对采集到的膜气计量装置间接计量终端数据进行分割、融合、重组。采用分布式储能和定容两级最优控制方法对燃气计量装置间接计量终端数据的运行状态进行了分析。采用ZigBee组网协议构建气体计量装置间接计量终端的网络结构模型,采用与阀体内壁平行布置的集成式高精度温湿度传感器,检测膜式气体计量装置出口的温度和压力。温度信息存储在DSP中,以用户费用、系统运维、调峰填谷效益作为储能定容外层模型的参数。分析了膜式气体测量装置在高开关频率模式下间接计量终端数据的输出稳定性。结合自适应参数调节,实现了膜式气体测量装置的间接计量终端控制和数据动态采集。在无线传感器网络组网控制模式下实现计量终端数据的动态监控。试验结果表明,采用该方法对燃气计量装置进行间接计量终端数据监测,输出稳定性好,传感信息动态融合强,减少了计量误差,提高了燃气计量装置的计量精度。
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来源期刊
Journal of Measurements in Engineering
Journal of Measurements in Engineering ENGINEERING, MECHANICAL-
CiteScore
2.00
自引率
6.20%
发文量
16
审稿时长
16 weeks
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