Proceedings of the 10th International Conference on Rotor Dynamics -- IFToMM. Vol. 2 /

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Bibliographic Details
Meeting name:International Conference on Rotordynamics (10th : 2018 : Rio de Janeiro, Brazil)
Imprint:Cham, Switzerland : Springer, [2019]
Description:1 online resource
Language:English
Series:Mechanisms and machine science, 2211-0984 ; volume 61
Mechanisms and machine science ; v. 61.
Subject:
Format: E-Resource Book
URL for this record:http://pi.lib.uchicago.edu/1001/cat/bib/11745594
Hidden Bibliographic Details
Other authors / contributors:Cavalca, Katia Lucchesi, editor.
Weber, Hans Ingo, editor.
ISBN:9783319992686
3319992686
9783319992679
3319992678
9783319992679
9783319999258
3319999257
Digital file characteristics:text file PDF
Notes:International conference proceedings.
Includes bibliographical references.
Online resource; title from PDF title page (SpringerLink, viewed August 21, 2018).
Summary:IFToMM conferences have a history of success due to the various advances achieved in the field of rotor dynamics over the past three decades. These meetings have since become a leading global event, bringing together specialists from industry and academia to promote the exchange of knowledge, ideas, and information on the latest developments in the dynamics of rotating machinery. The scope of the conference is broad, including e.g. active components and vibration control, balancing, bearings, condition monitoring, dynamic analysis and stability, wind turbines and generators, electromechanical interactions in rotor dynamics and turbochargers. The proceedings are divided into four volumes. This second volume covers the following main topics: condition monitoring, fault diagnostics and prognostics; modal testing and identification; parametric and self-excitation in rotor dynamics; uncertainties, reliability and life predictions of rotating machinery; and torsional vibrations and geared systems dynamics.
Other form:Printed edition: 9783319992679
Printed edition: 9783319999258
Standard no.:10.1007/978-3-319-99268-6

MARC

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505 0 |a Crack Detection and Dynamic Analysis of a Cracked Rotor with Soft Bearings Using Different Methods of Solution -- Nuclear Reactor Heat Transfer Pump Rotordynamic Based Diagnostics and field Data Model Reconciliation -- Performance Analysis of Support Vector Machine and Wavelet Packet Transform based Fault Diagnostics of Induction Motor at Various Operating Conditions -- Multi Fault Diagnosis of Centrifugal Pumps with Time, Frequency and Wavelet based Features using Support Vector Machines -- Interpretation of Dynamic Data Plots for Troubleshooting and Resolving Vibration in Large Rotating Machinery -- Prediction of Dynamic Characteristics Induced by Rubbing Between Rotating Blade and Casing -- Application of Machine Learning in Diesel Engines Fault Identification -- Detection of Cracks in a Rotating Shaft Using Density Characterization of Orbit Plots -- Model-Based Vibration Condition Monitoring for Fault Detection and Diagnostics Applied to Large Hydro Generators -- Monitoring of Induction Motor Mechanical and Electrical Faults by Optimum Multiclass-Support Vector Machine Algorithms Using Genetic Algorithm -- Application of Deep Stacked Auto-Encoder Neural Networks to Feature Learning for Intelligent Diagnosis of Machine Condition. 
520 |a IFToMM conferences have a history of success due to the various advances achieved in the field of rotor dynamics over the past three decades. These meetings have since become a leading global event, bringing together specialists from industry and academia to promote the exchange of knowledge, ideas, and information on the latest developments in the dynamics of rotating machinery. The scope of the conference is broad, including e.g. active components and vibration control, balancing, bearings, condition monitoring, dynamic analysis and stability, wind turbines and generators, electromechanical interactions in rotor dynamics and turbochargers. The proceedings are divided into four volumes. This second volume covers the following main topics: condition monitoring, fault diagnostics and prognostics; modal testing and identification; parametric and self-excitation in rotor dynamics; uncertainties, reliability and life predictions of rotating machinery; and torsional vibrations and geared systems dynamics. 
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