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A fault diagnosis method for HVAC Air Handling Units considering fault propagation

机译:考虑故障传播的暖通空调机组故障诊断方法

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As a major component of Heating, Ventilation and Air Conditioning systems (HVACs), an Air Handling Unit (AHU) is used to condition and circulate air to rooms to satisfy human comfort requirements. In an AHU, cooling coil and supply air fan are two key components, where a cooling coil reduces air temperature and a fan delivers air to rooms. The fan and the cooling coil are interconnected, and a fault in one component may cause faults in the other. To save energy and satisfy human comfort requirements, diagnosing faults of the fan and the cooling coil is critical. In this paper, a method based on Coupled Hidden Markov Models (CHMMs) and Statistical Process Control (SPC) is developed to consider dependent component states and state transitions. Three major difficulties are overcome: (1) couplings among components are captured by the CHMM, and properties of CHMM states are considered to obtain reasonable distribution assumptions of state estimates; (2) a new initialization scheme based on both physical knowledge and observations is developed to identify appropriate initial values for CHMM parameters to avoid trapping at local optimums; and (3) coupling among components are also captured in SPC by considering Markov properties of state transitions to detect dependent faults. Experimental results show that the method can accurately diagnose faults with a low false alarm rate.
机译:作为供暖,通风和空调系统(HVAC)的主要组成部分,空气处理单元(AHU)用于调节空气并将其循环到房间中,以满足人类的舒适度要求。在AHU中,冷却盘管和送风风扇是两个关键组件,其中冷却盘管降低空气温度,风扇将空气输送到房间。风扇和冷却盘管相互连接,一个组件中的故障可能会导致另一个组件中的故障。为了节省能源并满足人类的舒适度要求,诊断风扇和冷却盘管的故障至关重要。本文提出了一种基于耦合隐马尔可夫模型(CHMM)和统计过程控制(SPC)的方法来考虑相关组件状态和状态转换。克服了三个主要困难:(1)CHMM捕获组件之间的耦合,并考虑CHMM状态的属性以获得状态估计的合理分布假设; (2)开发了一种基于物理知识和观测值的新初始化方案,以识别CHMM参数的适当初始值,以避免陷入局部最优状态; (3)通过考虑状态转移的马尔可夫特性来检测相关故障,在SPC中也可以捕获组件之间的耦合。实验结果表明,该方法能够以较低的误报率准确诊断故障。

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