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Optimum operating performance based online fault-tolerant control strategy for sensor faults in air conditioning systems

机译:基于最佳运行性能的空调系统传感器故障在线容错控制策略

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摘要

Thrs paper presents an online fault-tolerant control strategy. By correcting the faulty measurements with a final correcting factor, the strategy covers five steps: fault detection, construction of correcting alternatives, performance forecasting, alternatives outranking, and fault correction. System energy, indoor air quality, human thermal comfort, and control efficiency are considered as a whole to evaluate the operating performance. Taking the supply air temperature sensor faults as testing examples, the strategy is tested in a virtual air conditioning system and simulated on TRNSYS platform. The testing results show that a large fault correcting factor is obtained in the first hour, an adjusting phase presents in the next several hours, and the correction factor keeps unchanged finally. High level of calculating accuracy is required for the performance prediction model. Also, for the outranking evaluation model, the thresholds and weight coefficients should be assigned appropriately to meet the requirements of building functions and/or owners.
机译:Thrs论文提出了一种在线容错控制策略。通过使用最终的校正因子来校正错误的测量结果,该策略涵盖了五个步骤:故障检测,构造更正替代方案,性能预测,替代方案排行榜和故障校正。系统能源,室内空气质量,人体热舒适性和控制效率作为整体来评估运行性能。以送风温度传感器故障为例,在虚拟空调系统中对该策略进行了测试,并在TRNSYS平台上进行了仿真。测试结果表明,在最初的一个小时内获得了较大的故障校正因子,在接下来的几个小时内出现了调整阶段,最终校正因子保持不变。性能预测模型需要高水平的计算精度。另外,对于排名较高的评估模型,应适当分配阈值和权重系数,以满足建筑物功能和/或所有者的要求。

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