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Continuous IEQ monitoring system: Performance specifications and thermal comfort classification

机译:连续IEQ监控系统:性能规格和热舒适性分类

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The quality of buildings can be assessed in terms of the indoor air quality, thermal comfort, lighting quality, acoustic comfort afforded the occupants, collectively referred to as Indoor Environmental Quality (IEQ). A major barrier to a more thoroughly representative audit of actual IEQ performance are the expense and complexity of the measurement instrumentation required. Rapid developments in sensor technology in recent years present the opportunity for continuous and pervasive IEQ monitoring to deliver truly representative characterisations of building performance at a modest cost. The last remaining obstacle to realising these developments seems to be a concern about instrument accuracy.In this paper we test the performance of a low-cost IEQ monitoring system (SAMBA) introduced in an earlier paper. Calibration data from 100 devices was analysed to calculate the standard error of the estimate as a measure of equipment accuracy. Those performance specifications were used in a Monte Carlo simulation based on measurements of thermal comfort parameters from 24 office buildings. Performance measures suggests the low-cost system, whilst not as accurate as laboratory equipment, is more than sufficient for building IEQ diagnostics and compliance assessments. Furthermore, the results of the Monte Carlo simulation show that continuous monitoring systems are better at characterising long-term performance than ad hoc measurement strategies using precision equipment. Low-cost pervasive monitoring technologies therefore offer a unique opportunity to improve our quantitative understanding of, and response to, indoor environmental quality issues.
机译:可以根据室内空气质量,热舒适性,照明质量,居住者提供的声学舒适性来评估建筑物的质量,统称为室内环境质量(IEQ)。对实际IEQ性能进行更彻底的代表性审核的主要障碍是所需测量仪器的费用和复杂性。近年来,传感器技术的飞速发展为连续不断的IEQ监控提供了机会,以适度的成本提供了真正具有代表性的建筑性能表征。实现这些发展的最后一个障碍似乎是对仪器精度的关注。在本文中,我们测试了较早论文中介绍的低成本IEQ监视系统(SAMBA)的性能。分析了来自100个设备的校准数据,以计算估计值的标准误差,以衡量设备的准确性。这些性能指标用于基于24栋办公楼的热舒适性参数测量的蒙特卡洛模拟中。绩效指标表明,该低成本系统虽然不如实验室设备精确,但足以用于构建IEQ诊断和合规性评估。此外,蒙特卡洛模拟的结果表明,与使用精密设备的临时测量策略相比,连续监视系统在表征长期性能方面更好。因此,低成本的无处不在的监测技术为提高我们对室内环境质量问题的定量理解和响应提供了独特的机会。

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