Correlational Extremal System for Controlling the Beginning of Faults in Oil Field Equipment by Analyzing their Wattmeter and Dynamometer Charts

Q4 Engineering
T. Aliev, G. A. Guluev, A. Rzayev, N. E. Rzayeva, F. Pashayev, R. Gadimov
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Abstract

The creation of technology for the analysis of wattmeter charts to control the main equipment of oil fields has always been of both theoretical and great practical interest. Numerous experiments have shown that the wattmeter chart of their electric motor is a highly noisy signal, and a significant part of the diagnostic information is contained in the estimates of the noise variance and the cross-correlation function between the noise and the useful signal. The lack of technologies for their analysis made it difficult and still makes it difficult to use the wattmeter chart to control the indicated equipment. The paper proposes a technology for controlling the onset of malfunctions and early diagnostics of the technical condition of sucker rod pumping units (SRPU), electric submersible pumps (ESPs), modular cluster pump stations (MCPS) of oil fields. It is shown that during operation, the wattmeter chart of the electric motors of these objects reflects information about the beginning of the latent period of change in their technical condition, which can be used as informative attributes in their diagnosis. A technology is proposed for determining the estimate of the cross-correlation function RXε(μ) between the useful signal X(iΔt) and the noise ε(iΔt) of the wattmeter chart and the technology for generating a set of reference wattmeter charts, in which the obtained informative attributes coincide with the informative attributes of the wattmeter charts of typical malfunctions. It is proposed to solve the problem of identifying faults in the equipment under consideration by the informative attributes of current and reference wattmeter charts of electric motors using correlation extremal systems. It is shown that using the proposed technology it is also possible to control the onset of similar malfunctions of SRPU by analyzing the dynamometer chart. The results of experiments showing the effectiveness and expediency of creating these control systems based on CES are presented.
通过分析油田设备的瓦特表图和测功图,建立了控制油田设备故障开始的关联极值系统
利用瓦特表图分析技术来控制油田的主要设备,一直是一个既有理论意义又有实际意义的课题。大量实验表明,其电机的瓦特表图是一个高噪声信号,其中很大一部分诊断信息包含在噪声方差的估计和噪声与有用信号之间的互相关函数中。由于缺乏对其进行分析的技术,使得使用瓦特表图来控制所指示的设备变得困难,现在仍然困难。提出了一种油田有杆抽油机(SRPU)、电潜泵(ESPs)、模块化集群泵站(MCPS)的故障发作控制和技术状态早期诊断技术。结果表明,在运行过程中,这些对象的电机功率表图反映了其技术状态变化潜伏期开始的信息,可作为诊断的信息属性。提出了一种确定电能表有用信号X(iΔt)与噪声ε(iΔt)之间互相关函数RXε(μ)估计值的技术,以及生成一组参考电能表图的技术,所得的信息属性与典型故障电能表的信息属性一致。提出了利用相关极值系统,利用电机电流图和参考功率图的信息属性来解决被考虑设备故障的识别问题。通过对测功机图的分析表明,采用所提出的技术也可以控制SRPU类似故障的发生。实验结果表明了基于CES的控制系统的有效性和方便性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Mekhatronika, Avtomatizatsiya, Upravlenie
Mekhatronika, Avtomatizatsiya, Upravlenie Engineering-Electrical and Electronic Engineering
CiteScore
0.90
自引率
0.00%
发文量
68
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