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Titlebook: Cyclostationarity: Theory and MethodsIII; Contributions to the Fakher Chaari,Jacek Leskow,Agnieszka Wylomanska Conference proceedings 2017

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Fault Detection in Belt Conveyor Drive Unit via Multiple Source Data,ely, in the first step, the electric current signal is smoothed in order to reduce its high-frequency volatility. Then the relationship between smoothed current signal and the temperature is examined. It was observed that the specifically smoothed current might explain the variation of the temperatu
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Application of Independent Component Analysis in Temperature Data Analysis for Gearbox Fault Detect from 4 gearboxes driving belt conveyor we have extracted one of 4 components, that is related to change of condition of a single gearbox. For new signal visibility of change is clear and simple automatic detection rule can be applied.
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Modified Protrugram Method for Damage Detection in Bearing Operating Under Impulsive Load,gh-energy impulses or amplitude modulated sine waves. The motivation for such method is derived from a real-world example—a rolling element bearing operating in a hummer crusher. We compare our method with two other well-known methods for damage detection in rotating machines, namely protrugram and
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https://doi.org/10.1007/978-3-8349-3890-9 from 4 gearboxes driving belt conveyor we have extracted one of 4 components, that is related to change of condition of a single gearbox. For new signal visibility of change is clear and simple automatic detection rule can be applied.
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https://doi.org/10.1007/978-3-658-23859-9ccur in the system. Therefore, energy and dynamics of the signal can be observed. Furthermore, it is possible to analyse amplitudes of time-frequency representation for different gear backlashes, which enables evaluation of non-linearity of the signal.
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2363-698X udents, researchers and professionals with a timely guide to cyclostationary systems, nonstationary processes and relevant engineering applications..978-3-319-84653-8978-3-319-51445-1Series ISSN 2363-698X Series E-ISSN 2363-6998
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