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An Improved Two-Motor Three-phase Drive Using FCS-MPC based Flux and Torque Control with Voltage Constraint Consideration

机译:使用FCS-MPC基通量和扭矩控制具有电压约束考虑的改进的双电机三相驱动

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This paper presents a flux and torque control scheme, based on finite-control-set model predictive control (FCS-MPC), for two three-phase induction motors supplied by a five-leg two-level inverter. The reduced-switch-count topology with leg sharing inherently imposes an additional constraint on the voltages in the system. In the best available PWM-based control scheme for this topology, the constraint means that, in simple terms, the sum of speeds of two machines cannot exceed the rated speed of one machine, in order to avoid over-modulation and large torque oscillations. In essence, no provision exists to account for the additional voltage limit of the topology. It will be shown here that the FCS-MPC can consider the voltage constraint dynamically in the control loop, and hence, apart from preserving the independent control of the two machines, it can significantly widen the speed operating range. Three different cost functions, corresponding to three operating modes, are considered. The unique way in which the MPC handles tracking errors allows the motors to operate dynamically in the base speed region with field weakening, without requiring any external change of the flux references. Simulation and preliminary experimental results verify the theory.
机译:本文介绍了一种磁通和扭矩控制方案,基于有限控制设定的模型预测控制(FCS-MPC),适用于由五腿两级逆变器提供的两个三相感应电机。腿部共享的减少开关计数拓扑本身强烈地对系统的电压施加了额外的约束。在最佳的基于PWM的控制方案的这种拓扑中,约束意味着,简单来说,两台机器的速度总和不能超过一台机器的额定速度,以避免过度调制和大的扭矩振荡。从本质上讲,不存在拓扑电压限制的规定。这里将显示FCS-MPC可以在控制回路中动态地将电压约束考虑,因此除了保持两台机器的独立控制之外,它可以显着扩大速度工作范围。考虑了三种不同的成本函数,对应于三种操作模式。 MPC处理跟踪误差的独特方式允许电机在基本速度区域中动态地操作,该磁场弱化,而不需要通量引用的任何外部变化。仿真和初步实验结果验证了理论。

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