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Automated Performance Tracking for Heat Exchangers in HVAC

机译:暖通空调中热交换器的自动性能跟踪

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摘要

Performance tracking, consisting of system state identification, fault detection, and propagation prediction, is critical to system operation optimization and maintenance scheduling. It is typical that dynamic systems degrade in a nonlinear manner, often times accompanied by abrupt fault occurrences, before and after which the degradation rate varies. Commonly used state estimation techniques for uncertainty evaluation, such as extended or unscented Kalman filter and particle filter (PF), are suited for nonlinear system state tracking without abrupt transient phenomena. To address this challenge, an integrated performance tracking technique is developed. It consists of a local search PF, which can dynamically adjust its resampling operation to avoid sample impoverishment as is commonly seen in conventional PFs, and a total variation filter, which can detect transient changes in the system states due to abrupt fault occurrence. The developed technique is evaluated for fault detection and performance tracking of a heat exchanger, which is a key component in the heating, ventilation, and air conditioning system. The performance of the developed technique is first evaluated using a finite element model of a heat exchanger, under both normal and faulty conditions. Subsequently, evaluation using experimental data provided by the American Society of Heating, Refrigeration, and AC Engineering was performed. The results have confirmed the accuracy and reliability of the developed technique in fault detection and performance degradation tracking involving complex fault propagation scenarios.
机译:性能跟踪(包括系统状态识别,故障检测和传播预测)对于系统操作优化和维护计划至关重要。通常,动态系统以非线性方式降级,通常伴随着突然的故障发生,降级速率之前和之后均会发生变化。用于不确定性评估的常用状态估计技术,例如扩展或无味的卡尔曼滤波器和粒子滤波器(PF),适用于没有突然瞬态现象的非线性系统状态跟踪。为了解决这一挑战,开发了一种集成的性能跟踪技术。它由一个本地搜索PF和一个总变化滤波器组成,它可以动态地调整其重采样操作以避免传统PF中常见的样品变差,它可以检测由于突然发生的故障而导致的系统状态瞬态变化。对开发的技术进行了评估,以用于热交换器的故障检测和性能跟踪,而热交换器是供暖,通风和空调系统中的关键组件。首先在正常和故障条件下,使用换热器的有限元模型评估所开发技术的性能。随后,使用美国加热,制冷和AC工程协会提供的实验数据进行评估。结果证实了所开发技术在涉及复杂故障传播场景的故障检测和性能下降跟踪中的准确性和可靠性。

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