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A transfer operator methodology for optimal sensor placement accounting for uncertainty

机译:用于最优传感器放置核算的转移操作员方法,用于不确定性

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摘要

Sensors in buildings are used for a wide variety of applications such as monitoring air quality, contaminants, indoor temperature, and relative humidity. These are used for accessing and ensuring indoor air quality, and also for ensuring safety in the event of chemical and biological attacks. It follows that optimal placement of sensors become important to accurately monitor contaminant levels in the indoor environment. However, contaminant transport inside the indoor environment is governed by the indoor flow conditions which are affected by various uncertainties associated with the building systems including occupancy and boundary fluxes. Therefore, it is important to account for all associated uncertainties while designing the sensor layout. The transfer operator based framework provides an effective way to identify optimal placement of sensors. Previous work has been limited to sensor placements under deterministic scenarios. In this work we extend the transfer operator based approach for optimal sensor placement while accounting for building systems uncertainties. The methodology provides a probabilistic metric to gauge coverage under uncertain conditions. We illustrate the capabilities of the framework with examples exhibiting boundary flux uncertainty.
机译:建筑物中的传感器用于各种应用,例如监测空气质量,污染物,室内温度和相对湿度。这些用于访问和确保室内空气质量,并确保在化学和生物攻击发生时确保安全性。因此,传感器的最佳放置对于准确地监测室内环境中的污染水平变得重要。然而,室内环境内的污染物运输受室内流动条件的管辖,这些条件受与包括占用和边界通量的建筑系统相关的各种不确定性的影响。因此,在设计传感器布局的同时考虑所有相关的不确定性是重要的。基于转移操作员的框架提供了识别传感器最佳放置的有效途径。以前的工作仅限于确定性方案下的传感器展示。在这项工作中,我们扩展了基于转移操作员的方法,以获得最佳传感器放置,同时占构建系统的不确定性。该方法提供了在不确定条件下的覆盖范围的概率测量标准。我们说明了框架的能力与表现出边界通量不确定性的示例。

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