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Nonlinear model predictive torque control and setpoint computation of induction machines for high performance applications

机译:高性能应用的非线性模型预测扭矩控制和设定的感应电机计算

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摘要

This paper proposes a model predictive torque control scheme for induction machines. The approach utilizes an augmented Lagrangian method in combination with a tailored gradient algorithm to efficiently solve the optimal control problem. The problem formulation accounts for hexagonal voltage constraints as well as constraints on the phase currents and the DC link current. A tailored calculation scheme for energy-efficient current setpoints improves the performance and the stability of the approach. Experimental results with computation times of less than 100 μs on a _DSPACE real-time platform prove the potential of the proposed torque control scheme.
机译:本文提出了一种用于感应机器的模型预测扭矩控制方案。该方法利用增强拉格朗日方法结合定制的梯度算法,以有效地解决最佳控制问题。问题配方占六边形电压约束以及相电流和DC链路电流的约束。用于节能电流设定值的量身定制的计算方案可提高对方法的性能和稳定性。在_DSPACE实时平台上的计算时间小于100μs的计算时间证明了所提出的扭矩控制方案的潜力。

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