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首页> 外文期刊>IEEE Transactions on Industrial Electronics >Model Predictive Thrust Force Control of a Linear Flux-Switching Permanent Magnet Machine With Voltage Vectors Selection and Synthesis
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Model Predictive Thrust Force Control of a Linear Flux-Switching Permanent Magnet Machine With Voltage Vectors Selection and Synthesis

机译:电压矢量选择与合成的线性磁通开关永磁电机的模型预测推力控制

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摘要

To reduce the thrust force ripple of a complementary and modular linear flux-switching permanent magnet machine, a model predictive thrust force control (MPTFC) is developed and implemented in this paper based on the active voltage vectors selection (AVVS) and two-voltage-vector synthesis (TVVS). First, the active voltage vectors are screened and assigned to the specific sector, instead of traversing all the possible vectors, and consequently, significantly decrease prediction workload. Second, for the elimination of the weighting factor in the conventional MPTFC, the control object is transformed from the thrust force and stator flux to the stator flux only by using the load angle. Third, to achieve the steady-state performance improvement, the TVVS approach is applied in each control period, where the optimal TVVS and its dwell time are simultaneously obtained by only one cost function. Both simulated and experimental results verify that the steady-state performance improvement can be realized by the developed MPTFC through comparing with normal hysteresis current control and conventional MPTFC strategies.
机译:为了减少互补和模块化线性磁通量开关永磁电机的推力波动,本文基于有效电压矢量选择(AVVS)和两电压互感器开发了模型预测推力控制(MPTFC)。向量合成(TVVS)。首先,筛选有效电压矢量并将其分配给特定扇区,而不是遍历所有可能的矢量,因此,显着减少了预测工作量。其次,为了消除常规MPTFC中的加权因子,仅通过使用负载角将控制对象从推力和定子磁通转换为定子磁通。第三,为了实现稳态性能的提高,在每个控制周期中采用TVVS方法,其中仅通过一个成本函数即可同时获得最佳TVVS及其停留时间。仿真和实验结果均证明,通过与常规磁滞电流控制和常规MPTFC策略进行比较,所开发的MPTFC可以实现稳态性能的提高。

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