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Enhanced methodology for injection-based real-time parameter estimation to improve back-EMF self-sensing in induction machine deadbeat-direct torque and flux control drives

机译:增强的基于注入的实时参数估计方法,可改善感应电机无差拍直接转矩和磁通控制驱动器中的反电动势自感应

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Back-EMF self-sensing is commonly used in induction machine (IM) drive systems. Deadbeat-direct torque and flux control (DB-DTFC) has also shown to be a highly effective method for IM control. At low speeds, accurate machine parameters are important for both DB-DTFC and back-EMF self-sensing performance. In this paper, an injection-based real-time parameter estimation method in IM DB-DTFC drives for improving the back-EMF self-sensing performance is proposed. The methodology for choosing an appropriate injected signal frequency is introduced. By injecting the signal, the positive and negative sequence components can be obtained through signal processing procedures. Then, machine parameters can be derived from these components. To obtain more accurate estimates, the rotor bar skin effect is considered. With encoder velocity feedback, the proposed DB-DTFC injection method induces no additional torque ripple, compared to traditional d-axis pulsating voltage vector injection used in IFOC. The positive and negative sequence components can be obtained with an electrical position estimation block. However, in self-sensing mode, the injected flux linkage induces an erroneous speed ripple, which causes a real speed ripple. Two approaches are presented to eliminate the speed ripple. Finally, with injection-based parameter estimation in IM DB-DTFC, the improvements of back-EMF self-sensing performance are experimentally evaluated.
机译:反电动势自感应通常用于感应电机(IM)驱动系统中。无差拍直接转矩和磁通控制(DB-DTFC)也已被证明是用于IM控制的高效方法。在低速下,准确的机器参数对于DB-DTFC和反电动势自感应性能都非常重要。本文提出了一种基于注入的IM DB-DTFC驱动器实时参数估计方法,以提高反电动势的自感应性能。介绍了选择合适的注入信号频率的方法。通过注入信号,可以通过信号处理程序获得正序和负序分量。然后,可以从这些组件中导出机器参数。为了获得更准确的估计,考虑了转子条集肤效应。与编码器速度反馈相比,与IFOC中使用的传统d轴脉动电压矢量注入相比,建议的DB-DTFC注入方法不会引起额外的转矩波动。可以通过电气位置估计模块获得正序和负序分量。但是,在自感应模式下,注入的磁链会引起错误的速度波动,从而导致实际速度波动。提出了两种方法来消除速度波动。最后,通过IM DB-DTFC中基于注入的参数估计,通过实验评估了反电动势自感应性能的改进。

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