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Robust Control Invariant Sets and Lyapunov-Based MPC for IPM Synchronous Motor Drives

机译:鲁棒控制不变集合和基于Lyapunov的MPC,用于IPM同步电动机驱动器

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This paper proposes a novel simplified model predictive control (MPC) scheme for interior permanent-magnet synchronous machines (PMSM) drive systems. The control problem is formulated in the stator flux space. The current–flux relation is eliminated from the MPC formulation and can be implemented as nonlinear map or an affine approximation without affecting the MPC complexity. The model is combined with the Lyapunov-based MPC concept. This scheme is shown to be asymptotically stable using the convex control set (CCS) input constraint with space vector modulation or pulse width modulation and asymptotically set stable using the finite control set (FCS) input constraint (with direct actuation). The stability properties are guaranteed for any cost function that is globally defined and any prediction horizon . These results are validated using a software-in-the-loop (SiL) platform and an experimental test bench.
机译:本文提出了一种新颖的简化模型预测控制(MPC)方案,用于内部永磁同步电机(PMSM)驱动系统。在定子磁通空间中提出了控制问题。从MPC公式中消除了电流与通量的关系,可以将其实现为非线性映射或仿射近似,而不会影响MPC的复杂性。该模型与基于Lyapunov的MPC概念结合在一起。使用空间矢量调制或脉冲宽度调制的凸控制集(CCS)输入约束,该方案显示为渐近稳定;使用有限控制集(FCS)输入约束(直接驱动),该方案渐近设置为稳定。对于全局定义的任何成本函数和任何预测范围,都可以保证稳定性。使用软件在环(SiL)平台和实验测试台可以验证这些结果。

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