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Model Predictive Direct Torque Control With Finite Control Set for PMSM Drive Systems, Part 1: Maximum Torque Per Ampere Operation

机译:具有有限控制集的PMSM驱动系统的模型预测直接转矩控制,第1部分:每安培操作的最大转矩

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摘要

A novel type of Model Predictive Direct Torque Control (MP-DTC) is proposed in this paper. The future behavior of the plant is predicted using a discrete-time state-space model in the $dq$ reference frame for a finite set of voltage vectors, which is pre-selected by a graph algorithm. The preferable input is chosen based on a cost function. Contrarily to conventional MP-DTC (and DTC), the stator flux is not explicitly controlled nor hysteresis bounds are used. The cost function is designed to meet multiple demands: torque reference tracking, Maximum Torque per Ampere (MTPA) tracking for high electrical efficiency, and limitation of the states to their maximum admissible values.
机译:本文提出了一种新型的模型预测直接转矩控制(MP-DTC)。在$ dq $参考系中使用离散时间状态空间模型对有限的一组电压矢量进行预测,以预测工厂的未来行为,该矢量由图形算法预先选择。基于成本函数选择优选的输入。与常规MP-DTC(和DTC)相反,未明确控制定子磁通,也未使用磁滞边界。成本函数旨在满足多种需求:扭矩参考跟踪,跟踪每安培最大扭矩(MTPA)以实现高电气效率以及将状态限制为其最大允许值。

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