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ADRC-based Model Predictive Current Control for PMSMs fed by Three-phase Four-switch Inverters

机译:基于ADRC的模型预测电流控制PMSMS由三相四开关逆变器馈送的PMSMS

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A novel automatic disturbances rejection control (ADRC)-based model predictive current control (MPCC) strategy is developed for permanent magnet synchronous motors (PMSMs) fed by three-phase four-switch inverters, an after-fault-topology for fault-tolerant three-phase six-switch inverters. The mathematical model of a PMSM fed by a three-phase four-switch inverter is built firstly. Then the ADRC and MPCC are respectively designed, with the former being used to realize disturbance estimation and disturbance compensation while the latter being used to reduce stator current ripple and improve the quality of the torque and speed control. The resultant ADRC-based MPCC PMSM fed by an unhealthy inverter has fault-tolerant effective with dynamical performance very close to an ADRC-based MPCC PMSM fed by a healthy inverter. On the other hand, compared with PI-based MPCC PMSM fed by an unhealthy inverter, it possesses better dynamical response behavior and stronger robustness as well as smaller THD index of three-phase stator current in the presence of variation of load torque. The simulation results validate the feasibility and effectiveness of the proposed scheme.
机译:为由三相四开关逆变器提供的永磁同步电动机(PMSMS)开发了一种新型的自动干扰抑制控制(ADRC)的模型预测电流控制(MPCC)策略,用于容错三个 - 相位六开关逆变器。通过三相四开关逆变器馈送的PMSM的数学模型。然后,ADRC和MPCC分别设计,前者用于实现干扰估计和扰动补偿,而后者用于减小定子电流纹波并提高扭矩和速度控制的质量。由不健康的逆变器供给的基于ADRC的MPCC PMSM具有容错性,具有非常接近由健康逆变器馈送的ADRC的MPCC PMSM的动态性能。另一方面,与由不健康逆变器喂养的基于PI的MPCC PMSM相比,它具有更好的动态响应行为和更强的鲁棒性以及在负载扭矩的变化存在下的三相定子电流的较小THD指数。仿真结果验证了所提出的方案的可行性和有效性。

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