Circuit Modeling and Simulation of EMI Filter for High Current Power Converters (特集 2024年環境電磁工学国際シンポジウム(EMC Japan/APEMC Okinawa))
デジタルデータあり(科学技術振興機構)
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- 資料種別
- 記事
- 著者・編者
- Katsuya NomuraKohei YamagamiShuhei ChizuwaTomoyuki ManabeTakashi Masuzawa
- タイトル(掲載誌)
- 電気学会論文誌. A, 基礎・材料・共通部門誌 = IEEJ transactions on fundamentals and materials
- 巻号年月日等(掲載誌)
- 145(12):2025.12
- 掲載巻
- 145
- 掲載号
- 12
- 掲載ページ
- 373-379
- 掲載年月日(W3CDTF)
- 2025-12
- ISSN(掲載誌)
- 0385-4205
- ISSN-L(掲載誌)
- 0385-4205
- 出版事項(掲載誌)
- 東京 : 電気学会
- 出版地(国名コード)
- JP
- 本文の言語コード
- eng
- NDLC
- 対象利用者
- 一般
- 所蔵機関
- 国立国会図書館
- 請求記号
- Z16-793
- 連携機関・データベース
- 国立国会図書館 : 国立国会図書館雑誌記事索引
- 書誌ID(NDLBibID)
- 034461025
- 整理区分コード
- 632
- 要約等
- <p>This paper shows a circuit model that can accurately simulate the differential-mode and common-mode attenuation characteristics of a three-stage EMI filter connected to high-current power converters. Passive components such as common mode choke coils and capacitors are modeled as high-frequency equivalent circuits based on impedance measurement results. For the coils that exhibited characteristics that are difficult to fit manually, vector fitting is used to derive a highly accurate equivalent circuit. The mutual inductance between input and output loops, which has a significant impact on common mode characteristics, is calculated based on the results of electromagnetic field analysis using a 3D CAD model. The combined circuit simulation model is able to predict the filter attenuation characteristics with an accuracy of less than 10dB error for both modes.</p>
- DOI
- 10.1541/ieejfms.145.373
- オンライン閲覧公開範囲
- インターネット公開
- 連携機関・データベース
- 科学技術振興機構 : J-STAGE
- 要約等
- <p>This paper shows a circuit model that can accurately simulate the differential-mode and common-mode attenuation characteristics of a three-stage EMI filter connected to high-current power converters. Passive components such as common mode choke coils and capacitors are modeled as high-frequency equivalent circuits based on impedance measurement results. For the coils that exhibited characteristics that are difficult to fit manually, vector fitting is used to derive a highly accurate equivalent circuit. The mutual inductance between input and output loops, which has a significant impact on common mode characteristics, is calculated based on the results of electromagnetic field analysis using a 3D CAD model. The combined circuit simulation model is able to predict the filter attenuation characteristics with an accuracy of less than 10dB error for both modes.</p>
- DOI
- 10.1541/ieejfms.145.373
- 関連情報(URI)
- 参照
- Spice equivalent circuits of frequency-domain responsesSimulation Model of Common-Mode Chokes for High-Power ApplicationsHigh-Frequency Equivalent Circuit of a Ferrite Common Mode Choke Considering DC Superimposition CharacteristicsModeling of Parasitic Inductive Couplings in a Pi-Shaped Common Mode EMI FilterSimulation of shielding performance against near field coupling to EMI filter for power electronic converter using FEMBehavioral Modeling of Chokes for EMI Simulations in Power ElectronicsImproving the Pole Relocating Properties of Vector FittingCircuit Analysis of an EMI Filter for the Prediction of its Magnetic Near-Field Emissions3-D Electromagnetic Modeling of Parasitics and Mutual Coupling in EMI FiltersRational approximation of frequency domain responses by vector fittingAnalytical Wideband Model of a Common-Mode ChokeThe Three-Phase Common-Mode Inductor: Modeling and Design IssuesModeling Method of Stray Magnetic Couplings in an EMC Filter for Power Electronic Devices
- 連携機関・データベース
- 国立情報学研究所 : CiNii Research
- 提供元機関・データベース
- Japan Link Center雑誌記事索引データベースCrossref
- 書誌ID(NDLBibID)
- 034461025