商品情報にスキップ
1 1

Position Sensorless Control System within Over-modulation Range Based on Mathematical Model Robust against Magnetic Saturation of IPMSMs

Position Sensorless Control System within Over-modulation Range Based on Mathematical Model Robust against Magnetic Saturation of IPMSMs

通常価格 ¥770 JPY
通常価格 セール価格 ¥770 JPY
セール 売り切れ
税込

カテゴリ: 論文誌(論文単位)

グループ名: 【D】産業応用部門(英文)

発行日: 2017/01/01

タイトル(英語): Position Sensorless Control System within Over-modulation Range Based on Mathematical Model Robust against Magnetic Saturation of IPMSMs

著者名: Yosuke Nakayama (Nagoya University), Atsushi Matsumoto (Chubu University), Masaru Hasegawa (Chubu University)

著者名(英語): Yosuke Nakayama (Nagoya University), Atsushi Matsumoto (Chubu University), Masaru Hasegawa (Chubu University)

キーワード: IPMSM,position sensorless control,magnetic saturation,over modulation,comb filter

要約(英語): This paper proposes a position sensorless control system for interior permanent magnet synchronous motors (IPMSMs) within the inverter over-modulation range. In general, using the position sensorless control method in the middle- and high-speed regions requires q-axis inductance, which varies significantly owing to magnetic saturation. Therefore, parameter mismatch may occur, which decreases the motor efficiency and causes control system instability. Furthermore, in the inverter over-modulation range, the performance of the auto current regulator deteriorates significantly because disturbance components, which consist of low-order harmonic current components, are fed back to the controller. As a result, the operation range is not appropriately expanded if no measurements are obtained for these components. First, the robustness against magnetic saturation is increased by constructing a position sensorless control system based on the Ld model. Next, a comb-filter-based harmonic current countermeasure method is proposed. The position sensorless control system can expand the operation range in this method. Finally, the effectiveness of the proposed control system is confirmed by several experiments.

本誌: IEEJ Journal of Industry Applications Vol.6 No.1 (2017) Special Issue on “Motor Drive and its Related Technologies”

本誌掲載ページ: 36-45 p

原稿種別: 論文/英語

電子版へのリンク: https://www.jstage.jst.go.jp/article/ieejjia/6/1/6_36/_article/-char/ja/

販売タイプ
書籍サイズ
ページ数
詳細を表示する