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1.
公开(公告)号:US10746590B2
公开(公告)日:2020-08-18
申请号:US15719897
申请日:2017-09-29
Applicant: Rockwell Automation Technologies, Inc.
Inventor: Linglai Li , Zhenhuan Yuan , Kun Wei , Robert H. Schmidt , Michael J. Melfi , Brian Fast , Sunil R. Gaddam , Chris E. Gottlieb
IPC: G01H1/00 , H02H7/08 , G01R31/34 , H02P29/032 , H02P29/024 , H02K11/21
Abstract: The subject matter disclosed herein describes a method and system to monitor and identify vibrations in a rotational mechanical system. Various fault conditions in a rotating machine operating at variable speeds may be identified, at least in part, by identifying the multiple of the fundamental frequency, or order, at which the vibration occurs. The orders of vibration present in a measured vibration signal may be determined by finding an order spectrum of a measured vibration signal in the position domain. A fault vector is generated from the order spectrum that identifies the magnitude of each order of vibration present in the measured vibration signal. The fault vector may be plotted on a radar chart to provide a visual indication of the type of fault present in the mechanical system. Evaluation models for each fault determines a probability and magnitude for each fault condition being present in the sampled vibration signal.
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2.
公开(公告)号:US20190101436A1
公开(公告)日:2019-04-04
申请号:US15719897
申请日:2017-09-29
Applicant: Rockwell Automation Technologies, Inc.
Inventor: Linglai Li , Zhenhuan Yuan , Kun Wei , Robert H. Schmidt , Michael J. Melfi , Brian Fast , Sunil R. Gaddam , Chris E. Gottlieb
CPC classification number: G01H1/006 , G01R31/343 , H02H7/08 , H02K11/21 , H02P29/0241 , H02P29/032
Abstract: The subject matter disclosed herein describes a method and system to monitor and identify vibrations in a rotational mechanical system. Various fault conditions in a rotating machine operating at variable speeds may be identified, at least in part, by identifying the multiple of the fundamental frequency, or order, at which the vibration occurs. The orders of vibration present in a measured vibration signal may be determined by finding an order spectrum of a measured vibration signal in the position domain. A fault vector is generated from the order spectrum that identifies the magnitude of each order of vibration present in the measured vibration signal. The fault vector may be plotted on a radar chart to provide a visual indication of the type of fault present in the mechanical system. Evaluation models for each fault determines a probability and magnitude for each fault condition being present in the sampled vibration signal.
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