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Virtual in-situ calibration method in building systems

机译:建筑系统中的虚拟原位校准方法

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Sensors play an important role in guiding building systems to achieve desired operation and efficiency. However, sensors are subject to continuous degradation and failures overtime. Although a periodical calibration is needed, it is exceptionally difficult and/or impractical to many sensors with a conventional manual approach. Uncalibrated problematic sensors could significantly compromise the systems' performance and lead to unintended loss of energy efficiency in buildings. We propose a methodology, termed virtual in-situ calibration, to solve this critical issue. It is developed by mathematically extracting the characteristics of essential aspects involved in a calibration, including the environment assessment, benchmark establishment, and uncertainty quantification. A case study of a supply air temperature sensor in rooftop units illustrates the implementation process; the erratic uncertainty is reduced from +/- 19.2 degrees C to +/- 0.7 degrees C after the virtual in-situ calibration. The calibration method can be implemented online to significantly improve the reliability of sensor networks in buildings. (C) 2015 Elsevier B.V. All rights reserved.
机译:传感器在引导建筑系统实现所需的操作和效率方面发挥着重要作用。但是,传感器会不断退化,并且随着时间的流逝会发生故障。尽管需要定期校准,但是对于使用常规手动方法的许多传感器而言,这是异常困难和/或不切实际的。未经校准的有问题的传感器可能会严重损害系统的性能,并导致建筑物中能源效率的意外损失。我们提出了一种称为虚拟原位校准的方法来解决这一关键问题。它是通过数学提取校准所涉及的基本方面的特征而开发的,包括环境评估,基准确定和不确定性量化。以屋顶单元中的送风温度传感器为例,说明了实现过程。虚拟现场校准后,不稳定的不确定度从+/- 19.2摄氏度降低到+/- 0.7摄氏度。该校准方法可以在线实施,以显着提高建筑物中传感器网络的可靠性。 (C)2015 Elsevier B.V.保留所有权利。

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