Title : Design and Implementation of PV inverter based on novel soft switching current Fed half Bridge front end converter

Type of Material: Thesis
Title: Design and Implementation of PV inverter based on novel soft switching current Fed half Bridge front end converter
Researcher: S SENTHILKUMAR
Guide: K. SIDDAPPA NAIDU
Department: Department of Electrical and Electronics Engineering
Publisher: Bharath University, Chennai
Place: Chennai
Language: English
Subject: Electrotechnical Commission
Static VAr Compensator
Voltage Source Converter
Electrical Engineering
Engineering and Technology
Dissertation/Thesis Note: PhD; Department of Electrical and Electronics Engineering, Bharath University, Chennai, Chennai; D08EE004
Fulltext: Shodhganga

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035__|a(IN-AhILN)th_454601
040__|aBHAU_600073|dIN-AhILN
041__|aeng
100__|aS SENTHILKUMAR|eResearcher
110__|aDepartment of Electrical and Electronics Engineering|bBharath University, Chennai|dChennai|ein
245__|aDesign and Implementation of PV inverter based on novel soft switching current Fed half Bridge front end converter
260__|aChennai|bBharath University, Chennai
300__|dDVD
502__|cDepartment of Electrical and Electronics Engineering, Bharath University, Chennai, Chennai|oD08EE004|bPhD
518__|oDate of Registration|d2008-10-15
520__|aMulti-port dc-dc isolated converter has emerged recently as very important in the case of PV based storage and distribution application. A new front end converter is introduced for efficient PV generation and Common solid state transformer to improve the converter op-erating speed. Half bridge non-isolated dc-dc converter introduced for battery storage and Controller is implemented based on BESS (battery energy storage system) for high power grid distribution proposed in secondary of transformer. Front end converter (FEC) plays a major role and its switching operation is per-formed by MPPT based pulse genera-tions.Theoverall converter performance is verified through MATLAB (Simulink). Recent days the growth in peak demand for the increasing of distributed and deregulated energy systems require an optimized grid control unit. The advances in computing and communication technologies forming the traditional power network into a smart grid, capable of real-time remote monitoring and control. Mart is particularl
650__|aElectrical Engineering|2UGC
650__|aEngineering and Technology|2AIU
653__|aElectrotechnical Commission
653__|aStatic VAr Compensator
653__|aVoltage Source Converter
700__|aK. SIDDAPPA NAIDU|eGuide
856__|uhttp://shodhganga.inflibnet.ac.in/handle/10603/170933|yShodhganga
905__|afromsg

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