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Equipment diagnosis device, refrigerating cycle apparatus, fluid circuit diagnosis method, equipment monitoring system, and refrigerating cycle monitoring system

机译:设备诊断装置,冷冻循环装置,流体回路诊断方法,设备监视系统以及冷冻循环监视系统

摘要

A failure diagnosis apparatus for a refrigerating cycle had a problem that it has a low precision because the fluid is treated, and it is difficult to detect a foretaste of failure, absorb individual differences of real machine in the failure determination, and determine a cause of failure. Also, no cheap and practical diagnosis apparatus and method are provided. A plurality of instrumentation amounts concerning the refrigerant such as the pressure and temperature of the refrigerating cycle apparatus or other instrumentation amounts are detected, the state quantities such as composite variables are acquired by making the arithmetic operation on these instrumentation amounts, and whether the apparatus is normal or abnormal is judged employing the arithmetic operation results. If learning is made during the normal operation, a current state is judged, and if learning is made by compulsorily performing the abnormal operation, or if the abnormal operating condition is operated during the current operation, a failure foretaste such as a critical operation can be made from a change in the Mahalanobis distance. Thereby, the secure diagnosis can be implemented with a simple constitution.
机译:用于制冷循环的故障诊断设备的问题在于,由于对流体进行处理,因此其精度较低,并且难以检测故障的预兆,难以吸收故障判定中真实机器的个体差异,并且难以确定故障的原因。失败。而且,没有提供便宜且实用的诊断设备和方法。检测制冷循环装置的压力,温度等与制冷剂有关的多个仪表量或其他仪表量,通过对这些仪表量进行算术运算来获取复合变量等状态量。利用算术运算结果判断正常还是异常。如果在正常操作期间进行学习,则判断当前状态,并且通过强制执行异常操作来进行学习,或者如果在当前操作期间操作了异常操作条件,则可能发生诸如关键操作之类的故障预兆。由Mahalanobis距离的变化制成。由此,能够以简单的构成来进行安全诊断。

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