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A novel predictive current control for open-end winding induction motor drive with reduced computation burden and enhanced zero sequence current suppression

机译:一种新型预测电流控制的开放式绕组感应电动机驱动器,具有减轻的计算负担和增强的零序电流抑制

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In automotive testing systems such as chassis dynamometers and engine dynamometers, predictive current control (PCC) can be used to provide fast torque response, and open-end winding topology can be used to reduce torque ripples. In this paper, a novel predictive current control method based on A-B-C frame, without using cost function, for open-end winding induction motor drive is proposed and implemented. The experimental results show that the proposed method reduces the computation time by 61.05% compared with conventional predictive current control method. It also reduces zero-sequence current and provides faster dynamic response.
机译:在诸如底盘测功机和发动机测功机之类的汽车测试系统中,预测电流控制(PCC)可用于提供快速的转矩响应,而开放式绕组拓扑可用于减少转矩波动。提出并实现了一种基于A-B-C框架的新型预测电流控制方法,该方法无需使用成本函数,即可实现开放式绕组感应电动机的驱动。实验结果表明,与传统的预测电流控制方法相比,该方法的计算时间减少了61.05%。它还降低了零序电流,并提供了更快的动态响应。

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