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FAULT DETECTION AND DIAGNOSIS OF THE VALVE ACTUATORS IN THE DISCHARGE AIR TEMPERATURE (DAT) SYSTEMS, USING FREQUENCY ANALYSIS

机译:基于频率分析的排气温度(DAT)系统中阀门执行器的故障检测与诊断

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One of the main objectives of our research is to build several ARMA linear models and nonlinear neuro models for DAT systems such as developed in [2], [3]. Based on these models we have been interested in building some feedback control strategies for these systems. Due to the high complexity of the HVAC systems the requirements for reliability, availability, and security grow significantly and consequently investigations in this field become necessary. The objective of our paper is to develop some strategies for the fault detection and diagnosis (FDD) of the HVAC systems based on frequency and spectral analysis of the system response. The main interest is focused on dealing with the unanticipated valve actuator failures in the most general formulation based on the frequency analysis of the system response. In our study, we consider that the increasing of the backlash opening in the valve actuators could create serious problems by degrading drastically the HVAC system performance. Based on the spectrum analysis we are capable to gather the most significant patterns that characterize well each fault mode detected, and finally a systematic procedure and technique for proper fault accommodation under the unanticipated failures will be developed. As tools we use MATLAB with SIMULINK toolboxes from control systems, system identification and signal processing. Compared to the other FDD strategies developed in HVAC literature, the one presented in this paper is more simple and much easier to apply with the possibility of extension to other possible applications from different fields.
机译:我们研究的主要目标之一是为DAT系统建立几个ARMA线性模型和非线性神经模型,例如[2],[3]中开发的那样。基于这些模型,我们有兴趣为这些系统建立一些反馈控制策略。由于HVAC系统的高度复杂性,对可靠性,可用性和安全性的要求大大提高,因此有必要对该领域进行研究。本文的目的是基于系统响应的频率和频谱分析,开发一些用于HVAC系统的故障检测和诊断(FDD)的策略。主要的兴趣集中在基于系统响应的频率分析,以最一般的公式处理意外的阀门执行器故障。在我们的研究中,我们认为,阀门致动器中反冲孔的增加会严重降低HVAC系统的性能,从而造成严重的问题。在频谱分析的基础上,我们有能力收集能够很好地描述每种故障模式的最重要的模式,最后将开发出系统的程序和技术,以在意外故障下适当地容纳故障。作为工具,我们将MATLAB与来自控制系统,系统识别和信号处理的SIMULINK工具箱一起使用。与HVAC文献中开发的其他FDD策略相比,本文介绍的策略更简单,更容易应用,并且有可能扩展到不同领域的其他可能应用。

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