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Synchronous-Frame Modeling and dq Current Control of an Unbalanced Nine-Phase Induction Motor Due to Open Phases

机译:缺相的不平衡九相感应电动机的同步框架建模和dq电流控制

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摘要

Multiphase machines have several benefits compared with three-phase machines. Their inherently higher reliability makes them attractive in several applications. For instance, the nine-phase motor can operate with up to six open phases in its stator but with torque ripple production. However, the modeling and control schemes for a balanced motor cannot be used since now the stator is unbalanced. In order to allow the multiphase machine to work magnetically balanced even in open-phase conditions, an adequate dq current control should be employed. To achieve this control scheme, it is necessary to have a synchronous-frame modeling of a nine-phase induction motor under open-phase faults, which is developed here. Using it, a synchronous-frame control is derived, still using proportional controllers in the dq current loops. This is possible due to the use of an appropriate voltage decoupling considering the fault condition. Hence, the unbalanced multiphase induction motor can be controlled very similarly as a balanced one, additionally resulting in the torque ripple minimization. Experimental results characterize the operation with open phases. Simulation and finite-element results show the success of the proposed control scheme.
机译:与三相电机相比,多相电机具有多个优势。它们固有的较高可靠性使它们在多种应用中具有吸引力。例如,九相电动机的定子中最多可以有六个断相,但是会产生转矩脉动。但是,由于现在定子不平衡,因此无法使用平衡电动机的建模和控制方案。为了使多相电机即使在断相条件下也能保持磁平衡,应采用足够的dq电流控制。为了实现该控制方案,有必要对九相感应电动机在缺相故障下进行同步框架建模,在此进行建模。使用它,可以在dq电流环路中仍使用比例控制器来导出同步帧控制。这可能是由于考虑到故障条件而使用了适当的电压去耦。因此,不平衡多相感应电动机可以与平衡电动机非常类似地被控制,另外导致转矩脉动最小化。实验结果表征了开放相的操作。仿真和有限元结果表明了该控制方案的成功。

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