基于序贯有限元的IPMSM模型预测转矩和磁链控制方法

Ahmed Nasr, Chunyang Gu, Salman Ijaz, G. Buticchi, S. Bozhko, C. Gerada
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引用次数: 1

摘要

本文提出了一种先进的基于顺序有限元的模型预测转矩和磁链控制(SQ-FE-MPTFC)方法,通过预先选择简化的控制集和消除权重因子来简化控制实现,从而减轻内置永磁同步电动机(IPMSM)的转矩脉动。该策略在每个控制周期最优地选择有源电压和零电压矢量的组合,并根据可调节的转矩误差容限和自动转矩产生的转矩偏差获得切换瞬间。首先,考虑转矩误差容限,从两电平电压源逆变器允许的候选avv中预选两个候选avv;然后,利用其预测转矩偏差来确定每个候选开关的切换瞬间,以满足最小转矩脉动。在这些候选方案中,基于考虑流量-幅度误差的无加权因子代价函数选择具有相应占空时间的最优方案。最后,利用基于fe的IPMSM模型,在Matlab/Simulink环境下进行仿真,验证了所提方法的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Sequential Finite-Element-based Model Predictive Torque and Flux Control Method for IPMSM
This paper proposes an advanced sequential finite-element-based model predictive torque and flux control (SQ-FE-MPTFC) method to mitigate the torque ripple of the interior permanent magnet synchronous motor (IPMSM) while simplifying the control implementation by preselecting a reduced control set and eliminating the need for a weighting factor. This strategy optimally selects a combination of active-and zero-voltage vectors at every control cycle and obtains the switching instant based on an adjustable torque-error tolerance and the torque deviation produced by the AVV. First, considering the torque-error tolerance, it preselects two candidate AVVs among those admitted by the two-level voltage source inverter. Then, the switching instant of each candidate is decided using its predicted torque deviation to satisfy the minimum torque ripple. Among these candidates, the optimal one with its corresponding duty time is selected based on a weighting factor-less cost function that considers the flux-amplitude error. Finally, the FE-based IPMSM model is used to verify the effectiveness of the proposed method by simulations in Matlab/Simulink environment.
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