采用双磁通框架的开放式绕组内嵌式永磁同步电动机的直接自控制

Hyeon-Jun Park, H. Lee, Kyo-Beum Lee
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引用次数: 1

摘要

本文提出了一种采用双磁通量框架的开放式内绕组永磁同步电动机直接自控制的改进方案。传统的DSC通过单磁链和转矩滞后控制器直接控制磁通和转矩,具有转矩响应快、开关频率低的优点。但磁通脉动、电流脉动和转矩脉动较大。由于定子磁通轨迹在静止参考系中形成六边形。在本研究中,采用双磁通量框架来克服这一问题。该方法通过在静止参照系中形成十二角形磁通轨迹来减小定子磁通脉动。为了形成该磁通量轨迹,将电压矢量空间划分为12扇区,并通过比较双磁通量框架和参考磁通量来选择开关状态。仿真结果验证了所提DSC的正确性和有效性。
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Direct Self Control for Open-End Winding Interior Permanent Magnet Synchronous Motor using Dual Magnetic Flux Frame
This paper proposes improved direct self control (DSC) by using a dual magnet flux frame for open-end winding interior permanent synchronous magnet motor (OEWIPMSM). The conventional DSC has advantages of having fast torque response and low switching frequency due to the magnetic flux and torque being directly controlled by a single flux frame and torque hysteresis controller. However, the magnetic flux ripple, current ripple and torque ripple are large. Since the stator magnetic flux trajectory is formed hexagonal shape in stationary reference frame. In this study, a dual magnetic flux frame is applied to overcome this problem. The proposed DSC reduces stator magnetic flux ripple by forming the magnetic flux trajectory into a dodecagon shape in stationary reference system. To form this magnetic flux trajectory, the voltage vector space is divided into 12 sectors, and switching states are selected through comparing dual magnetic flux frame and reference magnetic flux. The validity and effectiveness of the proposed DSC are verified through simulation results.
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