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A distributed sensor network for measurement of human thermal comfort feelings

机译:用于测量人体热舒适感的分布式传感器网络

摘要

Previous research suggested that real-time measurement of human thermal comfort feelings could enhance the operation of an air-conditioning system. However, there is no such measurement system in the market. The reason is the difficulty in obtaining the real-time values of predicted mean vote (PMV), a well-recognized human thermal comfort index. In this paper, a distributed sensor network was employed to conduct real-time PMV measurement in office environments. Smart sensors were installed at different locations and were connected on the network. They measured the thermal data around an occupant and processed them in order to derive important information. This information was then transferred over the network to facilitate the measurement of PMV values. A laboratory experiment was performed to evaluate the technical feasibility of the approach, in which the prototype of the newly proposed measurement system was tested. An accuracy of ±0.5 deviating from the actual PMV value was found. A case study was then conducted to evaluate the economic impact of the system in an office using computer simulation. The new measurement system was first modeled to compute PMV values in the office. Advanced control algorithms were employed to issue control actions to maintain the thermal environment by using the PMV values from the measurement system. Much better performance in terms of human comfort and energy consumption was achieved. In conclusion, practical real-time PMV measurement was made feasible by using a distributed sensor network, which yielded a better air-conditioning control.
机译:先前的研究表明,实时测量人体的热舒适感可以增强空调系统的运行。但是,市场上没有这种测量系统。原因是难以获得预测的平均投票(PMV)的实时值,该值是公认的人体热舒适指数。本文采用分布式传感器网络在办公室环境中进行实时PMV测量。智能传感器安装在不同位置,并已连接到网络上。他们测量了乘员周围的热数据并对其进行了处理,以得出重要的信息。然后,该信息通过网络传输,以方便PMV值的测量。进行了实验室实验以评估该方法的技术可行性,其中对新提出的测量系统的原型进行了测试。发现与实际PMV值有±0.5的准确度。然后进行了一个案例研究,以使用计算机仿真评估该系统在办公室中的经济影响。首先对新的测量系统建模,以计算办公室中的PMV值。通过使用来自测量系统的PMV值,采用了先进的控制算法来发出控制动作以维持热环境。在人类舒适度和能量消耗方面实现了更好的性能。总之,通过使用分布式传感器网络使实际的实时PMV测量变得可行,从而实现了更好的空调控制。

著录项

  • 作者

    Tse WL; Chan WL;

  • 作者单位
  • 年度 2008
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类

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