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Flux-Trajectory-Optimization-Based Predictive Flux Control of Permanent Magnet Synchronous Machines

机译:基于磁通轨迹优化的永磁同步机的预测磁通控制

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This article proposed a predictive flux control strategy for permanent magnet synchronous machines based on flux trajectory optimization. Instead of minimizing the instantaneous flux tracking error at the end of each sampling period, the effect of different control sets on flux trajectories within the entire sampling interval is taken into account in the cost function. As a result, steady-state torque and flux ripples can be suppressed. Besides, inaccurate sector determination found in the conventional predictive control strategies can be successfully avoided. As well as highly dynamic performances inheriting from the predictive characteristics, enhanced steady-state torque control performances can be guaranteed under different operating conditions. Although the extended control set is utilized to augment the control freedom and further reduce torque ripple, the control effect of the proposed algorithm does not rely on the increase of switching frequency. Compared with the traditional predictive control strategies based on either finite control set or an extended control set, a superior control effect can be obtained while keeping a low switching frequency. Moreover, duty cycle signals are directly obtained in the prediction process, and no additional space vector pulsewidth modulation method is needed. Experimental validations and comprehensive comparison are conducted to demonstrate the effectiveness of the proposed strategy.
机译:本文提出了一种基于磁通轨迹优化的永磁同步机预测磁通控制策略。代替在每个采样周期结束时最小化瞬时磁通跟踪误差,在成本函数中考虑了不同控制集在整个采样间隔内的磁通轨迹上的效果。结果,可以抑制稳态扭矩和焊剂涟漪。此外,可以成功避免在传统的预测控制策略中发现的不准确的部门测定。除了从预测特性继承的高度动态性能,可以在不同的操作条件下得到增强的稳态扭矩控制性能。尽管扩展控制集用于增强控制自由度并进一步降低扭矩脉动,但是所提出的算法的控制效果不依赖于开关频率的增加。与基于有限控制集或扩展控制集的传统预测控制策略相比,可以在保持低开关频率的同时获得优异的控制效果。此外,在预测过程中直接获得占空比信号,并且不需要额外的空间矢量脉冲宽度调制方法。进行实验验证和全面比较,以证明拟议策略的有效性。

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