Optimization of Pulsed Power Generator Using Semiconductor Opening Switch
Optimization of Pulsed Power Generator Using Semiconductor Opening Switch
カテゴリ: 研究会(論文単位)
論文No: EPP19050
グループ名: 【A】基礎・材料・共通部門 放電・プラズマ・パルスパワー研究会
発行日: 2019/05/16
タイトル(英語): Optimization of Pulsed Power Generator Using Semiconductor Opening Switch
著者名: 楊 芸文(長岡技術科学大学),八幡 浩輔(長岡技術科学大学),須貝 太一(長岡技術科学大学),徳地 明(株式会社パルスパワー技術研究所),江 偉華(長岡技術科学大学)
著者名(英語): YIWEN YANG(Nagaoka university of technology),Kosuke Yawata(Nagaoka university of technology),Taichi Sugai(Nagaoka university of technology),Akira Tokuchi(Pulsed Power Japan Laboratory Ltd),Weihua Jiang(Nagaoka university of technology)
キーワード: pulse power system switches|pulse transformer|inductive-energy-storage|semiconductor opening switch
要約(日本語): A pulsed high-voltage generator has been developed using semiconductor opening switch (SOS), based on inductive-energy-storage scheme. A static-induction thyristor is used as the primary switch and a saturable magnetic core is used as both the pulse transformer and the magnetic switch. This paper introduces the resonant charging process based on this magnetic core-type pulse transformer. The saturation time of the pulse transformer can be optimally determined based on the B?H curve. A simulate is made by using PSpice for analysis. And the comparison between simulation waveforms and experiment waveforms is also discussed.
要約(英語): A pulsed high-voltage generator has been developed using semiconductor opening switch (SOS), based on inductive-energy-storage scheme. A static-induction thyristor is used as the primary switch and a saturable magnetic core is used as both the pulse transformer and the magnetic switch. This paper introduces the resonant charging process based on this magnetic core-type pulse transformer. The saturation time of the pulse transformer can be optimally determined based on the B?H curve. A simulate is made by using PSpice for analysis. And the comparison between simulation waveforms and experiment waveforms is also discussed.
原稿種別: 英語
PDFファイルサイズ: 1,289 Kバイト
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