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An Improved Direct Torque Control for a Single-Winding Bearingless Switched Reluctance Motor

机译:用于单卷绕无轴切换磁阻电动机的改进的直接扭矩控制

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The direct torque control (DTC) and direct force control (DFC) method were introduced to reduce the torque and levitation force ripple in single-winding bearingless switched reluctance motors (SWBSRMs). However, it still has some disadvantages. Firstly, the flux-linkage control is not suitable for the DTC method in SWBSRMs. On the one hand, it can increase the torque ripple. On the other hand, the RMS current can be increased and then the torque-ampere ratio is decreased. Secondly, the vectors selection is also unreasonable, which can increase the torque ripple further. In order to solve these problems, an improved control method based on DTC and DFC method for SWBSRMs is proposed in this paper, which can obtain high torque-ampere ratio and low torque ripple simultaneously. In the proposed method, the flux-linkage loop control is not needed and the space voltage vector table is improved. The experimental results show that the torque ripple is reduced by 66.7%, the torque-ampere ratio is increased by 200% and the switching times in one electrical period are reduced by 47.3%.
机译:引入直接扭矩控制(DTC)和直接力控制(DFC)方法,以减小单绕组无轴承开关磁阻电动机(SWBSRMS)中的扭矩和悬浮力纹波。但是,它仍然存在一些缺点。首先,磁通连杆控制不适用于SWBSRMS中的DTC方法。一方面,它可以增加扭矩纹波。另一方面,可以增加RMS电流,然后扭矩 - 安培比减小。其次,向量选择也是不合理的,这可以进一步增加扭矩脉动。为了解决这些问题,本文提出了一种基于DTC和DFC方法的改进的控制方法,可以同时获得高扭矩-Ampere比率和低扭矩脉动。在所提出的方法中,不需要磁通连杆环控制,并且节省空间电压矢量表得到改善。实验结果表明,扭矩脉动减少了66.7%,扭矩 - 安培比增加了200%,并且一个电气时段中的切换时间减少了47.3%。

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