基于物联网的水务移动监测平台应用研究  

Application research of water mobile monitoring platform based on Internet of Things

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作  者:江治国[1] JIANG Zhi-guo(Anhui National Defense Technology Vocational College,Anhui Lu'an 237011,China)

机构地区:[1]安徽国防科技职业学院,安徽六安237011

出  处:《齐齐哈尔大学学报(自然科学版)》2024年第1期27-31,共5页Journal of Qiqihar University(Natural Science Edition)

基  金:安徽省高校学科(专业)拔尖人才学术资助项目(gxbjZD2021129);安徽省教育厅质量工程项目资助-物联网应用技术专业教学团队(2021jxtd056)。

摘  要:由于水务系统的各项硬件设备长期运行在潮湿环境下,导致故障的发生频率升高。为了实时监测水务系统的运行,提出了基于物联网的水务移动监测平台应用研究。根据电压探测芯片的感知原理,设计了电源监测电路。在恒定电流下,将压敏元件应用到压力/流量传感器信号处理电路中,结合水务物联网移动监测终端的设计,完成平台的硬件设计。在平台的软件设计中,通过给出供水压力、水泵流量和调速比的约束条件,构建了水务系统优化调度模型。通过监测供水管的裂痕情况,设计了水务移动监测算法,实现平台的软件设计。测试结果表明,监测平台的各项功能均可以正常运行,并将监测数据传输时间控制在5 s以内,提高了监测的实时性。Due to the long-term operation of various hardware equipment in the water management system in humid environments,the frequency of faults increases.In order to monitor the operation of the water management system in real time,a research on the application of a water management mobile monitoring platform based on the Internet of Things has been proposed.Based on the sensing principle of the voltage detection chip,a power monitoring circuit was designed.Under constant current,apply pressure-sensitive elements to the signal processing circuit of pressure/flow sensors,and complete the hardware design of the platform in conjunction with the design of the water IoT mobile monitoring terminal.In the software design of the platform,an optimization scheduling model for the water affairs system was constructed by providing constraints on water supply pressure,pump flow rate,and speed regulation ratio.By monitoring the cracks in the water supply pipe,a water movement monitoring algorithm was designed to achieve the software design of the platform.The test results show that all functions of the monitoring platform in the article can be implemented normally,and the transmission time of monitoring data is controlled within 5 s,improving the real-time monitoring performance.

关 键 词:物联网 水务系统 传感器信号 移动监测 优化调度 监测终端 

分 类 号:TP277[自动化与计算机技术—检测技术与自动化装置]

 

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