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High-Resolution Gas Metering and Nonintrusive Appliance Load Monitoring System.

机译:高分辨率燃气计量和非侵入式设备负荷监控系统。

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摘要

This thesis deals with design and implementation of a high-resolution metering system for residential natural gas meters. Detailed experimental measurements are performed on the meter to characterize and understand its measurement properties. Results from these experiments are used to develop a simple, fast and accurate technique to non-intrusively monitor the gas consumption of individual appliances in homes by resolving small amounts of gas usage. The technique is applied on an existing meter retrofitted with a module that includes a high-resolution encoder to collect gas flow data and a microprocessor to analyze and identify appliance load profiles. This approach provides a number of appealing features including low cost, easy installation and integration with automated meter reading (AMR) systems. The application of this method to residential gas meters currently deployed is also given. This is done by performing a load simulation on realistic gas loads with the aim of identifying the necessary parameters that minimize the cost and complexity of the mechanical encoder module. The primary benefits of the system are efficiency analysis, appliance health monitoring and real-time customer feedback of gas usage. Additional benefits of include the ability to detect very small leaks and theft. This system has the potential for wide scale market adoption.
机译:本文致力于住宅天然气表的高分辨率计量系统的设计与实现。在仪表上执行详细的实验测量,以表征和了解其测量特性。这些实验的结果用于开发一种简单,快速和准确的技术,以解决少量的燃气使用量,从而非侵入性地监控家庭中单个电器的燃气消耗。该技术适用于现有的仪表,该仪表改装有一个模块,该模块包括一个高分辨率编码器(用于收集气流数据)和一个微处理器(用于分析和识别设备负载曲线)。这种方法提供了许多吸引人的功能,包括低成本,易于安装以及与自动抄表(AMR)系统集成。还介绍了该方法在当前部署的家用燃气表中的应用。这是通过对实际的气体负载执行负载模拟来完成的,目的是确定使机械编码器模块的成本和复杂性降至最低的必要参数。该系统的主要优点是效率分析,设备运行状况监控以及客户对天然气使用情况的实时反馈。的其他好处包括能够检测很小的泄漏和盗窃。该系统具有被广泛市场采用的潜力。

著录项

  • 作者

    Tewolde, Mahder.;

  • 作者单位

    State University of New York at Stony Brook.;

  • 授予单位 State University of New York at Stony Brook.;
  • 学科 Engineering General.;Energy.
  • 学位 M.S.
  • 年度 2012
  • 页码 98 p.
  • 总页数 98
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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