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Notice of Violation of IEEE Publication PrinciplesUsing Current Signature Analysis Technology to Reliably Detect Cage Winding Defects in Squirrel-Cage Induction Motors

机译:违反IEEE出版原则的通知使用电流签名分析技术可靠地检测鼠笼式感应电动机的笼式绕组缺陷

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Notice of Violation of IEEE Publication Principles"Using Current Signature Analysis Technology to Reliably Detect Cage Winding Defects in Squirrel-Cage Induction Motors"by I.M. Culbert and W. Rhodesin the IEEE Transactions on Industry Applications, Vol. 43, No. 2, March/April 2007After careful and considered review of the content and authorship of this paper by a duly constituted expert committee, this paper has been found to be in violation of IEEE''s Publication Principles.This paper contains portions of original text from the papers cited below. The original text was copied without attribution and without permission.Figure 5:驴Development of a Tool to Detect Faults in Induction Motors via Current Signature Analysis驴,by M. Fenger, B. A. Lloyd, and W. T. Thomsonin the Proceedings of the IEEE-IAS/PCA Cement Industry Conference, Dallas, TX, May 4-9, 2003, pp. 37-46.Equation 3:驴Case Histories of Rotor Winding fault diagnosis in induction motors驴,by W. T. Thomson, and D. Rankinin the Proceedings of the International Conference on Condition Monitoring, University College of Swansea, March 31-April 3, 1987, pp. 798-819.This paper will demonstrate, through industrial case histories, the application of current signature analysis (CSA) technology to reliably diagnose rotor winding problems in squirrel-cage motors. Many traditional CSA methods result in false alarms and/or misdiagnosis of healthy machines due to the presence of current components in the broken cage winding frequency domain, which are not the result of such defects. Such components can result from operating conditions, motor design, and drive components such as mechanical load fluctuations, speed-reducing gearboxes, etc. Due to theoretical advancements, it is now possible to predict many of these current components, thus making CSA testing less error prone and therefore a much more reliable technology. Reliable detection of the incepti-on of broken cage winding problems, or broken rotor bars, prior to failure allows for remedial actions to be taken to avoid significant costs associated with consequential motor component damage and unplanned downtime associated with such in-service failures
机译:I.M. Culbert和W. Rhodes违反IEEE出版原则“使用电流签名分析技术可靠地检测鼠笼式感应电动机中的笼式绕组缺陷”的通告。第43号,第2期,2007年3月/ 4日在正式组成的专家委员会对本文的内容和作者进行仔细和周密的审查后,发现该论文违反了IEEE的出版原则。来自以下引用的论文的原文。原始文本未经授权也未经许可被复制。图5:驴开发了一种通过电流签名分析检测感应电动机故障的工具,作者是M. Fenger,BA Lloyd和WT Thomson,摘自IEEE-IAS / PCA水泥工业会议,德克萨斯州达拉斯,2003年5月4日至9日,第37-46页。公式3:案例研究WT Thomson和D. Rankin在感应电动机中的转子绕组故障诊断历史1987年3月31日至4月3日,斯旺西大学国际条件监测会议,第798-819页。本文将通过工业案例历史展示电流签名分析(CSA)技术在可靠地诊断转子绕组中的应用鼠笼式电动机的问题。许多传统的CSA方法由于在故障的笼式绕组频域中存在电流分量而导致错误的警报和/或对健康机器的误诊,而这并不是此类缺陷的结果。这些组件可能是由运行条件,电机设计和驱动组件(例如机械负载波动,减速齿轮箱等)引起的。由于理论上的进步,现在可以预测许多这些当前组件,从而使CSA测试的错误更少容易产生,因此技术更加可靠。在故障之前可靠地检测出笼式绕组损坏问题或转子棒断裂的迹象,可以采取补救措施,以避免与随之而来的电动机组件损坏相关的大量成本以及与此类运行中故障相关的计划外停机时间

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