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Zero-Sequence Current Suppression with Dead-Time Compensation Control in Open-End Winding PMSM

机译:开放式绕组PMSM中具有死区补偿控制的零序电流抑制

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In this paper, the zero-sequence current control method by dead-time control is proposed. When controlling the open-end winding PMSM with zero-sequence voltage eliminated voltage vectors, there is not a method to suppress the zero-sequence current caused by the dead time effect. Although attempting to reduce this effect through the general dead time compensation method, it is impossible to suppress zero-sequence current due to dead-time non-linearity ideally. Therefore, in this paper, the proposed method uses not only general dead-time compensation but also active control of dead time compensation for generating controllable zero-sequence voltage. A simulation is conducted to implement the proposed method. Furthermore, it is verified by experiments using 2.1kW open-end winding PMSM in the low power that has severe dead time non-linearity and rated power.
机译:本文提出了一种基于死区时间控制的零序电流控制方法。当用零序电压消除电压矢量控制开路绕组PMSM时,没有一种方法可以抑制死区时间效应引起的零序电流。尽管试图通过一般的空载时间补偿方法来减小这种影响,但是由于空载时间非线性而无法理想地抑制零序电流。因此,本文提出的方法不仅使用一般的死区时间补偿,而且还利用死区时间补偿的主动控制来产生可控的零序电压。进行仿真以实现所提出的方法。此外,通过使用2.1kW开口绕组PMSM在低功率中进行的实验进行了验证,该低功率具有严重的停滞时间非线性和额定功率。

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