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Modeling and simulation of conventionally wired photovoltaic systems based on differential power processing SubMIC-enhanced PV modules

Author:
Olalla, C. , Deline, C. , Maksimovic, D.
Publisher:
IEEE
Year
: 2014
DOI: 10.1109/ULTSYM.2014.0500
URI: http://libsearch.um.ac.ir:80/fum/handle/fum/1018746
Keyword(s): acoustic streaming,finite difference time-domain analysis,vibrations,acoustic streaming,adiabatic process second order approximation,circular plane piston,classical finite difference time domain method,mass flow,mean excess pressure,numerical analysis,rigid pipe,thin boundary,vibrating surface,Acoustics,Cavity resonators,Equations,Finite difference methods,Mathematical model,Pistons,Time-domain analysis
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    Modeling and simulation of conventionally wired photovoltaic systems based on differential power processing SubMIC-enhanced PV modules

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contributor authorOlalla, C. , Deline, C. , Maksimovic, D.
date accessioned2020-03-12T20:34:43Z
date available2020-03-12T20:34:43Z
date issued2014
identifier other6877127.pdf
identifier urihttp://libsearch.um.ac.ir:80/fum/handle/fum/1018746
formatgeneral
languageEnglish
publisherIEEE
titleModeling and simulation of conventionally wired photovoltaic systems based on differential power processing SubMIC-enhanced PV modules
typeConference Paper
contenttypeMetadata Only
identifier padid8142985
subject keywordsacoustic streaming
subject keywordsfinite difference time-domain analysis
subject keywordsvibrations
subject keywordsacoustic streaming
subject keywordsadiabatic process second order approximation
subject keywordscircular plane piston
subject keywordsclassical finite difference time domain method
subject keywordsmass flow
subject keywordsmean excess pressure
subject keywordsnumerical analysis
subject keywordsrigid pipe
subject keywordsthin boundary
subject keywordsvibrating surface
subject keywordsAcoustics
subject keywordsCavity resonators
subject keywordsEquations
subject keywordsFinite difference methods
subject keywordsMathematical model
subject keywordsPistons
subject keywordsTime-domain analysis
identifier doi10.1109/ULTSYM.2014.0500
journal titleontrol and Modeling for Power Electronics (COMPEL), 2014 IEEE 15th Workshop on
filesize1390907
citations0
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