Publication detail

Results of the experimental research of dynamic vibration processes of the rail for rolling stocks fault diagnostics

NOZHENKO, O. CHERNIAK, G. PÍŠTĚK, V. SUSLOV, E. NOZHENKO, V. KRAVCHENKO, K.. KUČERA, P.

English title

Results of the experimental research of dynamic vibration processes of the rail for rolling stocks fault diagnostics

Type

Paper in proceedings (conference paper)

Language

en

Original abstract

The paper discusses the preconditions of the methodology development of diagnosis system for assessing dynamic impact of the rolling stock on the basis of processing and analysis of data obtained in operation on the results of measurement of parameters that characterize dynamic vibration processes of the mechanical system of “rolling stock–track”. On the basis of usage of the processing methods of time series and stochastic processes there has been established the relationship between these dynamic processes and wheel defects, and designed experimental data processing algorithms, which in the future will be an integral part of the intellectual systems of decision making when assessing the impact level of the rolling stock on the track.

Keywords in English

rolling stock with the wheels defects; acceleration of the rails; the statistical signal processing techniques

Released

2017-09-27

Publisher

JVE International

ISSN

2345-0533

Book

Vibroengineering PROCEDIA

Volume

13

Number

1

Pages from–to

165–170

Pages count

6

BIBTEX


@inproceedings{BUT140192,
  author="NOZHENKO, O. and CHERNIAK, G. and PÍŠTĚK, V. and SUSLOV, E. and NOZHENKO, V. and KRAVCHENKO, K.. and KUČERA, P.",
  title="Results of the experimental research of dynamic vibration processes of the rail for rolling stocks fault diagnostics",
  booktitle="Vibroengineering PROCEDIA",
  year="2017",
  journal="Vibroengineering Procedia",
  volume="13",
  number="1",
  pages="165--170",
  publisher="JVE International",
  doi="10.21595/vp.2017.19044",
  issn="2345-0533",
  url="https://www.jvejournals.com/article/19044"
}