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Novel Deadbeat Predictive Current Control for SPMSM Drives with inductance and rotor flux linkage variation

机译:具有电感和转子磁链链接变化的SPMSM驱动器的新型无差拍预测电流控制

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This paper focuses on deadbeat predictive current control (DPCC) for a surface permanent-magnet synchronous motor (SPMSM). One of the main drawbacks that are limiting the widespread application of this control is the disturbance caused by model parameter mismatch. In order to address this problem, a novel DPCC with parameter mismatch compensation for SPMSM is proposed in this paper. The contribution of this work can be divided into three parts. First, the real inductance can be acquired from the d-axis voltage equation online based on the previous instant voltage and current information. Second, with the acquisition of the d-axis inductance, a novel voltage equation with one step delay compensation is proposed to reject the disturbance caused by rotor flux linkage and inductance at the same time. Third, the initial resistance parameter effect on the proposed DPCC is analyzed theoretically. To verify the effectiveness of the proposed DPCC, the conventional DPCC and proposed DPCC are compared. The results demonstrate that the proposed DPCC can effectively reject the parameter mismatch disturbances in both simulation and experiment.
机译:本文重点研究表面永磁同步电动机(SPMSM)的无差拍预测电流控制(DPCC)。限制这种控制方法广泛应用的主要缺点之一是模型参数不匹配引起的干扰。为了解决这个问题,本文提出了一种新型的带有参数失配补偿的DPCC SPMSM。这项工作的贡献可以分为三个部分。首先,可以基于先前的瞬时电压和电流信息从d轴电压方程在线获取实际电感。其次,在获得d轴电感的基础上,提出了具有阶跃延迟补偿的新型电压方程,以同时消除转子磁链和电感引起的干扰。第三,从理论上分析了初始电阻参数对所提出的DPCC的影响。为了验证提议的DPCC的有效性,将常规DPCC和提议的DPCC进行了比较。结果表明,所提出的DPCC可以在仿真和实验中有效地抑制参数失配干扰。

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