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Vector Control of Double-Delta Sourced Winding for a Dual-Winding Induction Machine

机译:双绕组感应电机双三角绕组的矢量控制

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摘要

Ripple currents can be mitigated in motor drives by applying double-delta sourced winding (DDSW), which uses a multilevel operation approach with two-level converters. In practice, a dual-winding induction machine (DWIM) has been considered for this application due to its inherent compatibility with DDSW. The modeling of a DDSW-based DWIM is discussed for vector control, and a decoupling method between converters is proposed to improve the dynamic response of the current regulation. In addition, torque control is discussed for a situation in which one of the converters is dropped out. The effectiveness of the proposed methods is assessed via experiments under low switching frequencies because DDSW is appropriate for high-power applications, where multiple windings are essential. It was confirmed that the total harmonic distortion of the converter currents was decreased by 67.7% when an 11-kW DWIM was driven on the basis of DDSW. Furthermore, the bandwidth of the current regulation could be increased by 113.7% owing to the proposed decoupling method.
机译:可以通过应用双三角源绕组(DDSW)来减轻电动机驱动器中的纹波电流,该绕组采用多级操作方法和两级转换器。实际上,由于其与DDSW的固有兼容性,因此已考虑将双绕组感应电机(DWIM)用于该应用。讨论了基于DDSW的DWIM的矢量控制建模,并提出了转换器之间的去耦方法以改善电流调节的动态响应。另外,针对其中一个转换器掉出的情况讨论了转矩控制。建议的方法的有效性通过在低开关频率下的实验进行评估,因为DDSW适用于需要多个绕组的大功率应用。可以肯定的是,在DDSW的基础上驱动11 kW DWIM时,转换器电流的总谐波失真降低了67.7%。此外,由于提出的去耦方法,当前法规的带宽可以增加113.7%。

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