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Design and Analysis of the Main AC/DC Converter System for ITER

Design and Analysis of the Main AC/DC Converter System for ITER
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摘要 A design of the main AC/DC converter system for ITER is described and the configuration of the main AC/DC converters is presented. To reduce the reactive power absorbed from the converter units, the main AC/DC converters are designed to be series-connected and work in a sequential mode. The structure of the regulator of the converter system is described. A simulation model was built up for the PSCAD/EMTDC code, and the design was validated accordingly. Harmonic analysis and reactive power calculation of the converters units are presented. The results reveal the advantage of sequential control in reducing reactive power and harmonics. A design of the main AC/DC converter system for ITER is described and the configuration of the main AC/DC converters is presented. To reduce the reactive power absorbed from the converter units, the main AC/DC converters are designed to be series-connected and work in a sequential mode. The structure of the regulator of the converter system is described. A simulation model was built up for the PSCAD/EMTDC code, and the design was validated accordingly. Harmonic analysis and reactive power calculation of the converters units are presented. The results reveal the advantage of sequential control in reducing reactive power and harmonics.
出处 《Plasma Science and Technology》 SCIE EI CAS CSCD 2012年第4期338-342,共5页 等离子体科学和技术(英文版)
关键词 AC/DC converter sequential control harmonic analysis reactive power reduction AC/DC converter, sequential control, harmonic analysis, reactive power reduction
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参考文献9

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