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Two-time Scale Optimized Model Predictive Cascaded Speed and Current Control for PMSM Drives

机译:PMSM驱动器的两尺度优化模型预测级联速度和电流控制

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This paper proposes the two-time scale optimized model predictive speed and current control with for permanent magnet synchronous motor (PMSM). The specific sampling time are assigned to the speed control and current control subsystems respectively based on the characteristics of time scale for different subsystems. The prediction sequence of slow-sampling model during asynchronous sampling period remains the holding state in the conventional model predictive process, which weaken the dynamic performance of system. This paper proposes an estimation method by conducting linear function based on the virtual instants to further improve the predictive accuracy at asynchronous sampling instants. Compared to the conventional method, the improvement of proposed strategy is verified in simulation and experiment.
机译:本文提出了一种用于永磁同步电动机(PMSM)的两级比例优化模型预测速度和电流控制。根据不同子系统的时标特性,将特定的采样时间分别分配给速度控制和电流控制子系统。异步采样期间慢采样模型的预测序列在传统的模型预测过程中一直保持不变,这削弱了系统的动态性能。本文提出了一种基于虚拟时刻的线性函数估计方法,以进一步提高异步采样时刻的预测精度。与传统方法相比,所提策略的改进在仿真和实验中得到了验证。

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