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INTERNAL LEAKAGE FAULT DETECTION FOR VARIABLE DISPLACEMENT AXIAL PISTON PUMP

机译:可变排量轴向柱塞泵的内部泄漏故障检测

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In mobile machines, reliable condition monitoring (CM) of hydraulic system would be very beneficial because it could decrease the maintenance costs in case of a failure. It should also foresee potentially harmful, slight defects in the system, before they lead to system downtime. Very often the focus of the CM is in short term performance. For example, a neural network-based CM solutions require an extensive data collection and teaching phase. A model-based CM on the other hand an accurate model of the process which is tuned into a known operation points. However, it is typical that the operation conditions change. As a result, the process models become outdated and cause-action definitions do not apply to the changed situation. Therefore, a new model structure, Multi-Variable Histogram (MVH),for CM purposes is introduced. The MVH model is statistical nonlinear model of variable relations. The model is based on schematics where the system operation point changes are taken into account. The system input variables, as explanatory variables, define the operation point for the variable being observed. When the effects of the system input variables excluding faults are taken into account, faults can be seen as operation point changes. MVH model based CM solution includes the key elements of a long-term manageable CM solution. Furthermore, the experimental tests are carried-out with a variable displacement axial piston pump to verify the performance of the solution.
机译:在移动机器中,液压系统的可靠状态监视(CM)将非常有益,因为在发生故障的情况下,它可以降低维护成本。在导致系统停机之前,它还应预见系统中潜在的有害,轻微缺陷。 CM的重点通常是短期绩效。例如,基于神经网络的CM解决方案需要广泛的数据收集和教学阶段。另一方面,基于模型的CM是过程的精确模型,已调整为已知的操作点。但是,典型的是操作条件会发生变化。结果,流程模型变得过时,并且因果关系定义不适用于变化的情况。因此,引入了一种新的模型结构,即用于CM的多变量直方图(MVH)。 MVH模型是变量关系的统计非线性模型。该模型基于考虑了系统操作点更改的示意图。系统输入变量(作为解释变量)定义了所观察变量的操作点。考虑到系统输入变量(不包括故障)的影响时,故障可以看作是操作点变化。基于MVH模型的CM解决方案包括长期可管理CM解决方案的关键要素。此外,使用可变排量轴向柱塞泵进行了实验测试,以验证解决方案的性能。

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