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Dynamic Control Set-Model Predictive Control for Field-Oriented Control of VSI-PMSM

机译:VSI-PMSM面向现场控制的动态控制集模型预测控制

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摘要

In this digest, a novel Model Predictive Control scheme is proposed for 2L-VSI PMSM drive system. Even though standard FCS-MPC can lead to low switching frequency, but it degrades the steady state performance, while MPC with duty cycle reduces the current and torque ripples at expense of high switching frequency. To mollify the contradiction between the steady-state performance and the switching frequency, the proposed approach can move the switching instant from sampling instant to any instant within a sampling interval. But variable switching instant also introduces infinite candidate control actions, which can compose a dynamic control set. To capture the optimal control action, variable switching instant is transformed as vectoral form, and the convey quadratic relationship between objective function and variable switching instant is derived. Based on it, an online optimization procedure is established. Finally, the test results show that the proposed approach can reach a balance between steady-state performance and switching frequency.
机译:在该摘要中,提出了一种新型模型预测控制方案,用于2L-VSI PMSM驱动系统。即使标准FCS-MPC可能导致低开关频率,但它降低了稳态性能,而带有占空比的MPC以高开关频率为代价降低电流和扭矩波纹。为了使稳态性能与切换频率之间的矛盾,所提出的方法可以将切换即时移动到采样间隔内的任何瞬间。但是可变的切换瞬间还引入了无限候选控制操作,可以构成动态控制集。为了捕获最佳控制动作,可变切换瞬间被转换为vectoral形式,并且导出目标函数与可变切换瞬间之间的传送二次关系。基于它,建立了在线优化程序。最后,测试结果表明,所提出的方法可以达到稳态性能和开关频率之间的平衡。

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