bibtype C - Conference Paper (international conference)
ARLID 0445804
utime 20240103210256.5
mtime 20150723235959.9
SCOPUS 84942934739
title (primary) (eng) Probabilistic condition monitoring counting with information uncertainty
specification
page_count 7 s.
media_type C
serial
ARLID cav_un_epca*0445803
ISBN 978-960-99994-9-6
title Proceedings of 1st International Conference on Uncertainty Quantification in Computational Sciences and Engineering (UNCECOMP)
page_num 1-7
publisher
place Athény
name National Technical University of Athens
year 2015
keyword uncertainty quantification
keyword condition monitoring
keyword fault detection
author (primary)
ARLID cav_un_auth*0212695
name1 Ettler
name2 P.
country CZ
author
ARLID cav_un_auth*0242543
name1 Dedecius
name2 Kamil
full_dept (cz) Adaptivní systémy
full_dept Department of Adaptive Systems
department (cz) AS
department AS
institution UTIA-B
full_dept Department of Adaptive Systems
fullinstit Ústav teorie informace a automatizace AV ČR, v. v. i.
source
url http://library.utia.cas.cz/separaty/2015/AS/dedecius-0445804.pdf
cas_special
project
project_id 7D12004
agency GA MŠk
ARLID cav_un_auth*0291242
abstract (eng) Industrial condition monitoring and fault detection rely first of all on measured signals which are - like all information coming from the real world - burdened by pervasive uncertainty. A small international consortium is developing a hierarchical condition monitoring framework, which takes this uncertainty into account at any level of the observed control system hierarchy: from individual components up to the entire system. The framework adopts the so-called subjective logic - a kind of probabilistic logic enhanced by the notion of uncertainty. The main question is how to evaluate condition of every piece of input information using this theory. There were developed several methods of quantification of uncertainty for this purpose, based on relation between allowed signal range and noise of the signal, occurrence of outliers and investigation of spectral density, respectively. A specific method based on model switching was developed for piecewise stable signals which change their working points more or less abruptly. The system entered the phase of its validation in a pilot metal processing plant.
action
ARLID cav_un_auth*0318124
name 1st International Conference on Uncertainty Quantification in Computational Sciences and Engineering (UNCECOMP)
place Hersonissos, Kréta
dates 25.05.2015-27.05.2015
country GR
reportyear 2016
RIV JB
presentation_type PR
inst_support RVO:67985556
permalink http://hdl.handle.net/11104/0247985
confidential S
mrcbC83 RIV/67985556:_____/15:00445804!RIV16-AV0-67985556 191684310 Nejednotny kod oboru UTIA-B
mrcbC83 RIV/67985556:_____/15:00445804!RIV16-MSM-67985556 191805814 Nejednotny kod oboru UTIA-B
arlyear 2015
mrcbU14 84942934739 SCOPUS
mrcbU63 cav_un_epca*0445803 Proceedings of 1st International Conference on Uncertainty Quantification in Computational Sciences and Engineering (UNCECOMP) 978-960-99994-9-6 1 7 Athény National Technical University of Athens 2015