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Recognition of Operating States of a Wheel Loader for Diagnostics Purposes

机译:识别轮式装载机的操作状态以进行诊断目的

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In this paper, the operating states of a wheel loader were studied for diagnostics purposes using a real time simulation model of an articulated-frame-steered wheel loader. Test drives were carried out to obtain measurement data, which were then analyzed. The measured time series data were analyzed to find the sequences of operating states using two different data sets, namely the variables of hydrostatic transmission and working hydraulics. A time series is defined as a collection of observations made sequentially in time. In our proposed method, the time series data were first segmented to find operating states. One or more segments build up an operating state. A state is defined as a combination of the patterns of the selected variables. The segments were then clustered and classified. The operating states were further analyzed using the quantization error method to detect anomalies. The recognized operating states define the operation of the machine so the analysis can be focused on specific sections and situations in time series and to identify which kinds of operating situations generate anomalies. Simulated leakages in the main hydraulic components of the hydrostatic transmission and the working hydraulics were used as anomalies to study the changes in the recognized operating states and the magnitude of the quantization error.
机译:在本文中,研究了轮式装载机的操作状态,用于使用铰接框架转向轮装载机的实时模拟模型进行诊断目的。进行测试驱动以获得测量数据,然后分析。分析测量的时间序列数据以使用两个不同的数据集找到操作状态的序列,即静液压传输和工作液压的变量。时间序列被定义为依次在时间上依次进行的观察集合。在我们提出的方法中,首先分段时间序列数据以查找操作状态。一个或多个段建立了运行状态。状态被定义为所选变量的模式的组合。然后将这些细分分类并分类。使用量化误差方法进一步分析操作状态以检测异常。公认的操作状态定义了机器的操作,因此分析可以集中在时间序列中的特定部分和情况上,并确定哪种操作情况产生异常。使用静液压传递和工作液压的主液压元件中的模拟泄漏用作异常,以研究公认的操作状态的变化和量化误差的大小。

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