相間リアクトルの最適化による並列接続線形サイリスタ整流回路の電源高調波電源低減法

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Title
相間リアクトルの最適化による並列接続線形サイリスタ整流回路の電源高調波電源低減法
Title
A Method for Harmonic Reduction on the Source Side of a Parallel-Connected Thyristor Convertor Having an Interphase Reactor
Title Transcription
ソウカン リアクトル ノ サイテキカ ニヨル ヘイレツ セツゾク センケイ サイリスタ セイリュウ カイロ ノ デンゲン コウシュウハ デンゲン テイゲンホウ
Creator
Tanaka Toshihiko
Koshio Naotsugu
Source Title
島根大学総合理工学部紀要. シリーズA
Volume 31
Start Page 105
End Page 117
Journal Identifire
ISSN 13427113
Descriptions
A parallel-connected twelve-pulse thyristor converter consisting of two slx-pulse groups with an interphase reactor has been used for low-voltage high-current dc power supplies because of its high efficiency compared with a series one. It seems to be the most suitable converter for superconducting magnetic energy storage systems (SMES), which are expected to be used in actual power systems in the near future as a power system stabilizer. Harmonic reduction on the source side is required for such large-capacity thyristor converters. A number of methods have been proposed. These methods, however, require additional devices . Thus, a simple parallel-connected converter without any additional devices remains to be constructed to reduce harmonic currents on the source side. This paper attempts to construct a simple 12-pulse thyristor converter by proposing a novel design concept of the interphase reactor. This method proposed here requires no additional devices, and only reducing the inductance of the interphase reactor. The source current of the 12-pulse thyristor converter with the reduced inductance interphase reactor approaches sinusoidal waveforms, which are approximately equivalent to those of the 36-pulse thyristor converter. Simulation results show that decreasing the inductance of the interphase reactor contributes to reducing harmonic currents on the source side. In addition to the simulation results, experimental results verify the validity and practicability of the proposed novel design concept of the interphase reactor.
Language
jpn
Resource Type departmental bulletin paper
Publisher
島根大学総合理工学部
Interdisciplinary Faculty of Science and Engineering, Shimane University
Date of Issued 1997-12-26
Access Rights open access
Relation
[NCID] AA11157087
Remark 30-41+ / 1997-2007