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Sensor fault diagnosis and validation of building air conditioning systems.

机译:建筑物空调系统的传感器故障诊断和确认。

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摘要

This thesis develops the methodology for the automated detection, diagenesis and evaluation (FDD&E) of soft sensor faults in building Heating, Ventilation, and Air Conditioning (HVAC) systems. Literature survey shows that soft sensor fault, particularly, existing and/or slowly developing bias or drift, has not been properly addressed. Existing methods of sensor FDD in the field of HVAC and other disciplines are reviewed. Techniques based on the commonly used model-based approach is found inappropriate to deal with slowly developing soft sensor faults, due to its incapability to distinguish the sensor faults from system and/or component performance degradations and the difficulty to obtain reliable models.; The sensor FDD&E strategy described in this thesis is based on fundamental physical laws—the law of energy conservation and the law of mass conservation. Residual of the conservation constraint (balance) in steady state is used as an index to detect existence of sensor biases. Diagnosis and evaluation are achieved by estimating the values of the biases such that the sum(s) of the squares of corrected balance residuals is minimised. Since the validity of the balance constraints are not in doubt and independent of system/component conditions, such a law-based sensor FDD&E strategy can accommodate system/component performances degradations and does not require system/component models.; Application of the law-based strategy to the FDD&E of fixed biases on the temperature sensors and flow meters in primary-secondary chilling plant is described in this thesis. Basic (sequential) schemes and algorithms are developed for the sensors in chilled water network. A scheme based on a Genetic Algorithm is developed to improve the robustness of the basic schemes. A correlation cancellation method is developed for the cooling water sensors associated with chillers. The method uses a characteristic quantity derived in this thesis to detect and diagnose cooling water flow meter bias (or to estimate constant cooling water flow rate) without knowing whether the associated temperature sensors and power meter are biased or not.; A prototype of computer software implementing the developed sensor FDD&E schemes is described. The window-based software is developed aiming at providing a convenient tool for commissioning or re-commissioning the sensors in the chilling plant.; A study of the FDD&E scheme and algorithms for a time-varying sensor fault is conducted. The objective is to investigate and extend the capability of the law-based strategy in tracing time-varying sensor biases. A method of obtaining the time-varying sensor bias estimators by simply converting the counterparts for fixed sensor biases is developed.; The FDD&E strategy and schemes are validated in tests using dynamic simulation data and in a case study in an existing building HVAC system. The simulation tests showed that both fixed and time-varying biases of the flow meters and differential temperature sensors can be correctly identified and estimated. Absolute values of the individual temperature sensors can be estimated, given that a common reference temperature sensor is reliable or its bias value is known. In the field case study, three biases of 1.5, –1, 1.5 degree Celsius were introduced respectively into three temperature sensors in the chilling plant. Based on the data recorded in the BMS central station, the introduced faults were successfully identified and estimated. The estimates of the individual chiller chilled water flow meter biases and the constant cooling water flow rates were compared with commissioning records.
机译:本文开发了一种用于建筑物采暖,通风和空调(HVAC)系统中的软传感器故障的自动检测,成岩和评估(FDD&E)的方法。文献调查表明,软传感器故障,尤其是现有的和/或缓慢发展的偏差或漂移,尚未得到适当解决。回顾了HVAC和其他领域传感器FDD的现有方法。由于无法将传感器故障与系统和/或组件性能的下降区分开来,并且难以获得可靠的模型,因此发现基于常用的基于模型的方法的技术不适用于缓慢发展的软传感器故障。本文描述的传感器FDD&E策略基于基本的物理定律-能量守恒定律和质量守恒定律。稳定状态下守恒约束(平衡)的剩余量用作检测传感器偏差存在的指标。诊断和评估是通过估计偏差的值来实现的,从而使校正后的余额残差的平方和最小。由于平衡约束的有效性是毋庸置疑的,并且与系统/组件条件无关,因此这种基于法律的传感器FDD&E策略可以适应系统/组件性能的下降,并且不需要系统/组件模型。本文介绍了基于法律的策略在一次-二次冷却装置中温度传感器和流量计固定偏差的FDD&E中的应用。为冷水网络中的传感器开发了基本(顺序)方案和算法。开发了一种基于遗传算法的方案,以提高基本方案的鲁棒性。为与冷却器相关的冷却水传感器开发了一种相关性消除方法。该方法使用本文得出的特征量来检测和诊断冷却水流量计的偏差(或估计恒定的冷却水流量),而无需知道相关的温度传感器和功率计是否有偏差。描述了实现已开发的传感器FDD&E方案的计算机软件原型。开发基于窗口的软件旨在提供一种方便的工具,用于调试或重新调试冷却设备中的传感器。对时变传感器故障的FDD&E方案和算法进行了研究。目的是研究并扩展基于法律的策略在追踪时变传感器偏差方面的能力。提出了一种通过简单地转换对应于固定传感器偏置的对应变量来获得时变传感器偏置估计器的方法。 FDD&E策略和方案已在使用动态模拟数据的测试中以及在现有建筑物HVAC系统中的案例研究中得到验证。仿真测试表明,流量计和差分温度传感器的固定偏差和时变偏差都可以正确识别和估算。给定一个公共参考温度传感器是可靠的或已知其偏置值,则可以估算各个温度传感器的绝对值。在现场案例研究中,分别将三个偏差分别为1.5,–1、1.5摄氏度引入冷库中的三个温度传感器中。根据BMS中央站中记录的数据,成功识别和估计了引入的故障。将各个冷水机组冷水流量计偏差的估算值和恒定的冷却水流量与调试记录进行比较。

著录项

  • 作者

    Wang, Jin-Bo.;

  • 作者单位

    Hong Kong Polytechnic (People's Republic of China).;

  • 授予单位 Hong Kong Polytechnic (People's Republic of China).;
  • 学科 Engineering Civil.
  • 学位 Ph.D.
  • 年度 2000
  • 页码 229 p.
  • 总页数 229
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 建筑科学;
  • 关键词

  • 入库时间 2022-08-17 11:47:30

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