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Multiobjective Fuzzy Predictive Torque Control of an induction machine fed by a 3L-NPC inverter

机译:用3L-NPC逆变器供给的感应机多目标模糊预测扭矩控制

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Recently the use of Model Predictive Control (MPC) in electrical motor drives has been reported both theoretically and experimentally. Predictive Torque Control (PTC) has been developed to control induction motor drives, allowing high-performance and fast dynamics. However, the optimization used in PTC is based on a single cost function minimization, where control objectives are merged by using weighting factors. The adjustment of these factors is achieved through a nontrivial process and they are heavily dependent on the system parameters and user requirements, being a complex task in systems where two or three weighting factors must be adjusted. To avoid the well-known time-consuming simulations and branch and bound search process, a Multiobjective Fuzzy Predictive Torque Control (FPTC) is presented for a Three-Level Neutral-Point-Clamped voltage source inverter (3L-NPC). The proposed strategy changes the single cost function with a Multiobjective Optimization based on Fuzzy-Decision-Making. Simulation results are presented to illustrate the behavior of the motor drive under steady-state and dynamic conditions.
机译:最近,在理论上和实验中,在电动机驱动器中使用了模型预测控制(MPC)。已经开发出预测扭矩控制(PTC)以控制感应电机驱动器,允许高性能和快速动态。然而,PTC中使用的优化基于单一成本函数最小化,其中控制目标通过使用加权因子来合并。通过非活动过程实现这些因素的调整,并且它们严重依赖于系统参数和用户要求,是必须调整两个或三个加权因素的系统中的复杂任务。为了避免众所周知的耗时的模拟和分支和绑定搜索过程,为三级中性点夹紧电压源逆变器(3L-NPC)提供了一种多目标模糊预测扭矩控制(FPTC)。该策略基于模糊决策的多目标优化改变了单一成本函数。提出了仿真结果以说明在稳态和动态条件下电动机驱动的行为。

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