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矿山设备全生命周期信息集成与工况判别算法研究

Life-cycle information integration and working condition discriminational gorithm of mine equipment

  • 摘要: 针对矿山设备的全生命周期数据集成和设备大量监测数据信息挖掘问题,提出一种基于矿山物联网平台的设备全生命周期信息集成与工况判别算法。通过基于“逻辑设备-逻辑节点-数据类和数据属性”的分层模型结构完成数据的基本划分,采用松耦合方式完成基于矿山物联网平台的设备的全生命周期数据集成。最后,结合异常检测算法,提出了一种基于状态的设备监测数据判别算法,完成设备的工况判别。试验测试结果表明:结合从矿山物联网平台采集的设备运行检修阶段信息,利用Python语言完成用户接口构建,验证了集成方法的可行性,并以通风机设备为例验证了工况判别算法的有效性。

     

    Abstract: This paper proposes an information integration and condition recognition algorithm of mining equipment based on Mining Internet of Things(M-IoT)platform to solve the problem of data mining and integration in the life cycle.The basic data partition is completed by the hierarchical model structure,whose basis is logical device-logic node-class of data and data attributes.The whole life cycle data integration is accomplished by loose coupled way based on M-IoT.Finally,based on the anomaly detection algorithm,a “state based” device monitoring data discrimination algorithm is proposed to accomplish the condition discrimination of equipment.In the process of experiment,the information of equipment operation and maintenance phase is obtained from mine Internet of Things platform.The user interface is constructed by Python language,and the feasibility of the integration method is verified.Taking fan equipment as an example to verify the effectiveness of the algorithm.

     

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