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Observability of Boolean control networks: A unified approach based on the theories of finite automata and formal languages

Author:
Zhang Kuize , Zhang Lijun
Publisher:
IEEE
Year
: 2014
DOI: 10.1109/PVSC.2014.6925611
URI: https://libsearch.um.ac.ir:443/fum/handle/fum/1114002
Keyword(s): electroluminescence,reliability,solar cells,Imp current application,P-mono PV module,P-multiPV module,annealing effect,broken grid finger,electroluminescence image,light-induced degradation behavior,reliability,temperature cycling test,Annealing,Degradation,Gold,Lighting,MONOS devices,Silicon,Thermal degradation,PV module,light-induced degradation,pre-condition,reliability test,temperature cycling test
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    Observability of Boolean control networks: A unified approach based on the theories of finite automata and formal languages

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contributor authorZhang Kuize , Zhang Lijun
date accessioned2020-03-12T23:30:11Z
date available2020-03-12T23:30:11Z
date issued2014
identifier other6896129.pdf
identifier urihttps://libsearch.um.ac.ir:443/fum/handle/fum/1114002
formatgeneral
languageEnglish
publisherIEEE
titleObservability of Boolean control networks: A unified approach based on the theories of finite automata and formal languages
typeConference Paper
contenttypeMetadata Only
identifier padid8283195
subject keywordselectroluminescence
subject keywordsreliability
subject keywordssolar cells
subject keywordsImp current application
subject keywordsP-mono PV module
subject keywordsP-multiPV module
subject keywordsannealing effect
subject keywordsbroken grid finger
subject keywordselectroluminescence image
subject keywordslight-induced degradation behavior
subject keywordsreliability
subject keywordstemperature cycling test
subject keywordsAnnealing
subject keywordsDegradation
subject keywordsGold
subject keywordsLighting
subject keywordsMONOS devices
subject keywordsSilicon
subject keywordsThermal degradation
subject keywordsPV module
subject keywordslight-induced degradation
subject keywordspre-condition
subject keywordsreliability test
subject keywordstemperature cycling test
identifier doi10.1109/PVSC.2014.6925611
journal titleontrol Conference (CCC), 2014 33rd Chinese
filesize182444
citations0
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