WESBES:一种无线嵌入式传感器,用于利用时空相关数据改善人体舒适度

J. Hewlett, Milos Manic, C. Rieger
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引用次数: 7

摘要

如果使用得当,能源管理系统(EMS)可以通过优化供暖、通风和空调(HVAC)系统的效率来节省大量能源。然而,由于需要为建筑物的居住者保持可接受的舒适水平而施加的限制,困难经常出现。人类的舒适度很难用一种可测量的方式来定义,这一事实使这一挑战更加复杂。解决这个问题的一种方法是向建筑物管理员提供建筑物用户的直接反馈。尽管如此,这些数据在本质上是相对的,使得决定需要采取的行动变得困难,虽然已经设计了一些有用的舒适相关性,例如ASHRAE的预测平均投票指数,但它们是经验法则,不能将个人反馈与直接的,多样化的反馈感知联系起来。因为它们是相关的,量化气候的影响,建筑的年龄和相关的缺陷,如通风,不在这种相关的范围之内。因此,本文的贡献是无线嵌入式智能块环境感知(WESBES);这是一种价格合理的无线传感器平台,可以将主观的人体舒适度数据与时空相关的客观传感器测量结果直接配对,用于EMS。所描述的设备提供了一个灵活的研究平台,用于分析客观和主观乘员反馈之间的关系,以便制定更有意义的人类舒适度措施。它还可以为现有EMS中的实际部署提供负担得起且可扩展的选项。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
WESBES: A wireless embedded sensor for improving human comfort metrics using temporospatially correlated data
When utilized properly, energy management systems (EMS) can offer significant energy savings by optimizing the efficiency of heating, ventilation, and air-conditioning (HVAC) systems. However, difficulty often arises due to the constraints imposed by the need to maintain an acceptable level of comfort for a building's occupants. This challenge is compounded by the fact that human comfort is difficult to define in a measurable way. One way to address this problem is to provide a building manager with direct feedback from the building's users. Still, this data is relative in nature, making it difficult to determine the actions that need to be taken, and while some useful comfort correlations have been devised, such as ASHRAE's Predicted Mean Vote index, they are rules of thumb that do not connect individual feedback with direct, diverse feedback sensing. As they are a correlation, quantifying effects of climate, age of buildings and associated defects such as draftiness, are outside the realm of this correlation. Therefore, the contribution of this paper is the Wireless Embedded Smart Block for Environment Sensing (WESBES); an affordable wireless sensor platform that allows subjective human comfort data to be directly paired with temporospatially correlated objective sensor measurements for use in EMS. The described device offers a flexible research platform for analyzing the relationship between objective and subjective occupant feedback in order to formulate more meaningful measures of human comfort. It could also offer an affordable and expandable option for real world deployment in existing EMS.
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