DocumentCode
151106
Title
High power step-up modular resonant DC/DC converter for offshore wind energy systems
Author
Parastar, Amir ; Jul-Ki Seok
Author_Institution
Power Conversion Lab., Yeungnam Univ., Gyeongsan, South Korea
fYear
2014
fDate
14-18 Sept. 2014
Firstpage
3341
Lastpage
3348
Abstract
Recently, the interest in offshore wind farms has been increased significantly because of the stronger and more stable winds at sea, which will lead to a higher power production. DC/DC power conversion solutions are becoming more popular for fulfilling the growing challenges in the offshore wind power industry. This paper presents several multilevel modular DC/DC conversion systems based on the capacitor-clamped module concept for high power offshore wind energy applications. Two types of the capacitor-clamped modules, the double-switch module and switchless module, are discussed. A soft-switching technique is adopted to achieve minimal switching losses and the maximum system efficiency. Theoretical analysis is carried out for the 2n+1 level cascaded configurations based on the capacitor-clamped modules. The inherent interleaving property of the proposed configurations effectively reduces the output voltage ripple without adding extra components. A cascaded hybrid topology is developed by the combination of double-switch and switchless modules. The experimental results of two 5-kW prototype capacitor-clamped converters are presented to validate the theoretical analysis and principles as well as attest the feasibility of the proposed topologies.
Keywords
DC-DC power convertors; clamps; hybrid power systems; offshore installations; power capacitors; switching convertors; wind power plants; zero current switching; zero voltage switching; cascaded hybrid topology; double-switch module; high power step-up multilevel modular resonant DC-DC converter; offshore wind energy system; offshore wind farm; offshore wind power industry; output voltage ripple reduction; power 5 kW; prototype capacitor clamped converter; soft switching technique minimal loss; switchless module; Capacitors; Inductors; Stress; Switches; Topology; Wind energy; Wind turbines; Capacitor-clamped module; cascaded configuration; double-switch module; offshore wind energy; softswitching technique; switchless module;
fLanguage
English
Publisher
ieee
Conference_Titel
Energy Conversion Congress and Exposition (ECCE), 2014 IEEE
Conference_Location
Pittsburgh, PA
Type
conf
DOI
10.1109/ECCE.2014.6953854
Filename
6953854
Link To Document