High-Frequency Resonance Analysis and Stabilization Control Strategy of Modular Multilevel Converter Based on Eigenvalue Method

Main Article Content

SathishKumarS,Lal Raja Singh.R,Ramesh M,RajeshKannanM,Arun Kumar P, Sivachitra.M

Abstract

Another arrangement and its control technique for a Modular MultilevelConverter(MMC)-basedPhotoVoltaic(PV)-BatteryEnergyStorage(BES)structure.The proposed structure includesMMC high-repeat resonation wonder isusedinhighvoltageapplications(HVDCapplications,energyaccumulatingapplication).The proposed cream power dumbfound removal methodology uses BESsystemsanddifferentialstreamstocompensatepowerfumblesandmovepowerbetween the arms and legs of the converter. The state-space model of MMC controllerforpowercontrolissetupaccordingtothesensibleplanning.Bythenthetimedeferral of data and yield is considered in the controller, and the Pade fitting in state-spacemodelsuitableto theeigenvalueprocedureis familiarwith theall out statespacemodelofMMC.Consideringtheproposedmodel,theMMChigh-repeatresonation wonder is analyzed by the eigenvalue technique, and the exactness of themodel is affirmed by amusement results. Likewise, it is shown that high time concedecauseshigh-repeatresonationintheMMCstructurereliantuponthehelpfactorandthe systemeigenvaluecourse.


 

Article Details

How to Cite
SathishKumarS,Lal Raja Singh.R,Ramesh M,RajeshKannanM,Arun Kumar P, Sivachitra.M. (2021). High-Frequency Resonance Analysis and Stabilization Control Strategy of Modular Multilevel Converter Based on Eigenvalue Method. Annals of the Romanian Society for Cell Biology, 15623–15630. Retrieved from http://www.annalsofrscb.ro/index.php/journal/article/view/5193
Section
Articles