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Performance Improvement for PMSM DTC System through Composite Active Vectors Modulation

机译:通过组合有源矢量调制改善PMSM DTC系统的性能

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摘要

In this paper, a novel direct torque control (DTC) scheme based on composite active vectors modulation (CVM) is proposed for permanent magnet synchronous motor (PMSM). The precondition of the accurate compensations of torque error and flux linkage error is that the errors can be compensated fully during the entire control period. Therefore, the compensational effects of torque error and flux linkage error in different operating conditions of the PMSM are analyzed firstly, and then, the operating conditions of the PMSM are divided into three cases according to the error compensational effects. To bring the novel composite active vectors modulation strategy smoothly, the effect factors are used to represent the error compensational effects provided by the applied active vectors. The error compensational effects supplied by single active vector or synthetic voltage vector are analyzed while the PMSM is operated in three different operating conditions. The effectiveness of the proposed CVM-DTC is verified through the experimental results on a 100-W PMSM drive system.
机译:本文针对永磁同步电动机(PMSM),提出了一种基于复合有效矢量调制(CVM)的直接转矩控制(DTC)方案。准确补偿转矩误差和磁链误差的前提是,可以在整个控制期间内完全补偿误差。因此,首先分析了永磁同步电机在不同工况下的转矩误差和磁链误差的补偿效果,然后根据误差补偿效果将永磁电机的工况分为三种情况。为了平稳地实现新颖的复合有源矢量调制策略,使用影响因子来表示所应用有源矢量提供的误差补偿效果。当PMSM在三种不同的工作条件下工作时,将分析由单个有效矢量或合成电压矢量提供的误差补偿效果。通过在100 W PMSM驱动系统上的实验结果验证了所提出的CVM-DTC的有效性。

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