4.8 Article

Multiple Synchronous Reference Frame Current Harmonic Regulation of Dual Three Phase PMSM With Enhanced Dynamic Performance and System Stability

Journal

IEEE TRANSACTIONS ON INDUSTRIAL ELECTRONICS
Volume 69, Issue 9, Pages 8825-8838

Publisher

IEEE-INST ELECTRICAL ELECTRONICS ENGINEERS INC
DOI: 10.1109/TIE.2021.3116553

Keywords

Harmonic analysis; Power harmonic filters; Regulators; Regulation; Torque; Control systems; Stability analysis; Current harmonic detection; current harmonic regulation; dual three phase permanent magnet synchronous machine (PMSM); multiple synchronous reference frame (MSRF)

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This article introduces an improved multiple synchronous reference frame (MSRF) current harmonic regulation strategy for dual three phase permanent magnet synchronous machine drive system. The proposed strategy employs a new vector space decomposition transformation and auxiliary currents to decouple the current fundamental with harmonics and detect them using low pass filters in MSRFs. It also utilizes a generic complex vector proportional integral regulator to control the detected harmonics and improve the dynamic performance and stability of the control system.
This article proposes an improved multiple synchronous reference frame (MSRF) current harmonic regulation strategy for dual three phase permanent magnet synchronous machine drive system. A new vector space decomposition transformation combined with auxiliary currents is designed to decouple the current fundamental with current harmonics, and the auxiliary currents can be established by the pi/9 phase shifting of the physical currents in ABC set and the pi/18 phase shifting of the physical currents in XYZ set. By employing the proposed current decomposition, it is easy to detect them using low pass filters in MSRFs. A generic complex vector proportional integral regulator is then employed to control the detected current harmonics to track the current harmonic references. Compared with the existing MSRF-based methods, the proposed method provides a new current harmonic detection with reduced delay effect, which contributes to enhancing the dynamic performance of current harmonic regulation, and also stabilizing the control system. Comprehensive experimental results are given to validate the effectiveness of the proposed control strategy.

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