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Systems of vibration parameters automated control for diagnostics of equipment technical state

机译:振动参数系统自动控制设备技术状态诊断

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The article deals with the issues of the spatial direction of measurement, which is optimal in terms of recognition of the state of a particular unit node and preparation of control points for diagnosis. To form a diagnostic feature, the representation of the signal in a rather narrow range has been used, for instance, in the area of one of the harmonics of the fundamental mechanism excitation frequency. To process such signals, an integrated programming environment developed in the style of Microsoft Visual products has been created. To ensure the requirements of optimal vibration analysis, the structure of stationary equipment control systems has been proposed. Analysis of random vibration of the diagnosed object is done using real-time two-channel analyzers. Each analyzer channel has a processor for fast Fourier transform and operational information. The two available channels can allow assessment of the state of the object by special correlation functions. In contrast to the known methods, the established methods of determining the frequency range of defects of various light industry machine nodes differ in taking account size of parts and equipment nodes, and the possibility to use narrow-band filtering. The analysis of possibilities to install vibration sensors has been carried out.
机译:本文涉及测量空间方向的问题,这在特定单位节点状态的识别方面是最佳的,以及准备诊断的控制点。为了形成诊断特征,已经使用了相当窄的范围中的信号的表示,例如,在基本机制激发频率的一个谐波的区域中使用。要处理此类信号,已创建以Microsoft Visual产品的风格开发的集成编程环境。为确保最佳振动分析的要求,提出了固定设备控制系统的结构。使用实时双通道分析仪进行诊断对象的随机振动分析。每个分析器通道都有一个用于快速傅里叶变换和操作信息的处理器。两个可用的通道可以通过特殊相关函数允许评估对象的状态。与已知方法相反,确定各种轻型工业机器节点的缺陷频率范围的建立方法在考虑零件和设备节点的账户大小,以及使用窄带滤波的可能性。已经进行了安装振动传感器的可能性分析。

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