集成在传统机械水表上的智能水表模块设计

Nguyễn Hoài Phong, L. M. Phương, N. Tuyen, Pham Chi Dung, N. Huy
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引用次数: 1

摘要

智能水表是信息技术与物联网相结合和发展的智慧城市的重要设备之一。在水测量领域,人们使用智能水表远程收集数据,检测欺诈泄漏,并警告异常使用。大多数设计使用新的智能水表,而不是将智能模块集成到旧的传统水表中,这浪费了投资新水表的成本。为了克服这一问题,本文在分析越南常用的传统机械水表的基础上,提出了一种将智能无线远程数据模块集成到机械水表中的设计。对于智能水表来说,最大的问题是智能水表模块必须具有低能耗。为了解决这一问题,本文重点分析了一种LC传感器来取代传统的霍尔传感器。此外,本文提出采用低功耗、高安全性的Lora网络进行数据传输。为了验证所提出的方法,在Actaris和Itron水表上进行了实验设置,其中测试过程中Actaris水表采用霍尔传感器数字转换技术,Itron水表采用LC传感器。Lorawan网络上的数据传输用于两个实验装置。两种方案的实验结果表明,在实验室中实现的精度为~99.9%,丢包率为-100dBi,信噪比噪声< 10dB,平均能耗< 50uA,在3.7V/3600mAh电池下能够工作4年以上。这些结果表明,根据越南公用事业机构的条款,所提出的设计适用于具有测试周期的水表。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Design of a Smart Water Meter Module Integrated on a Traditional Mechanical Meter
Smart water metering is one of the important equipment of the smart cities where the information techniques and internet of things are combined and developed. In the field of water measurement, people use smart water meters to collect data remotely, detect fraudulent leaks, and warn of abnormal usage. Most designs use new smart water meters, instead integrated the smart module into old traditional water meters, this waste costs to invest in the new water meters. To overcome this problem, this paper proposes a design to integrate a smart wireless remote data module into the mechanical meter bases on the analysis of the traditional commonly mechanical water meter used in Vietnam. For smart water meters, the big problem is the smart water meter module must have low consumption energy. To solve this problem, this paper focuses on analyzing a LC sensor to replace the conventional Hall sensor. In addition, the paper proposed to use a low-power Lora network with high security for data transmission. To verify the proposed method, an experimental setup on Actaris and Itron water meter, where the testing process uses Hall sensor digital conversion technology for Actaris water meter and uses LC sensor for Itron water meter. The data transmission over the Lorawan network is used for both of two experimental setups. The results of both options show that the accuracy implemented in the laboratory is ~99.9%, packet loss rate <5%, RSSI signal loss >-100dBi, SNR noise < 10dB, consumption average energy < 50uA, capable of operating over 4 years with 3.7V/3600mAh battery. These results show that the proposed design is suitable for water meters with a testing cycle according to the terms of utility agencies in Vietnam.
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