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Self-Commissioning Algorithm for Inverter Nonlinearity Compensation in Sensorless Induction Motor Drives

机译:无传感器感应电动机驱动器逆变器非线性补偿的自调试算法

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摘要

In many sensorless field-oriented control schemes for induction motor (IM) drives, flux is estimated by means of measured motor currents and control reference voltages. In most cases, flux estimation is based on the integral of back-electromotive-force (EMF) voltages. Inverter nonlinear errors (dead-time and on-state voltage drops) introduce a distortion in the estimated voltage that reduces the accuracy of the flux estimation, particularly at low speed. In the literature, most of the compensation techniques of such errors require the offline identification of the inverter model and offline postprocessing. This paper presents a simple and accurate method for the identification of inverter parameters at the drive startup. The method is integrated into the control code of the IM drive, and it is based on the information contained in the feedback signal of the flux observer. The procedure applies, more in general, to all those sensorless ac drives where the flux is estimated using the back-EMF integration, not only for IM drives but also for permanent-magnet synchronous motor drives (surface-mounted permanent magnet and interior permanent magnet). A self-commissioning algorithm is presented and tested for the sensorless control of an IM drive, implemented on a fixed-point DSP. The feasibility and effectiveness of the method are demonstrated by experimental results.
机译:在许多用于感应电动机(IM)驱动器的无传感器磁场定向控制方案中,磁通是通过测量的电动机电流和控制参考电压估算的。在大多数情况下,磁通估算是基于反电动势(EMF)电压的积分。逆变器非线性误差(死区时间和通态电压降)会在估算电压中引入失真,从而降低磁通估算的准确性,尤其是在低速情况下。在文献中,大多数此类误差的补偿技术都需要离线识别逆变器模型和离线后处理。本文提出了一种简单而准确的方法,用于在变频器启动时识别逆变器参数。该方法已集成到IM驱动器的控制代码中,并且基于磁通观测器的反馈信号中包含的信息。该程序更普遍地适用于所有使用反电动势集成来估算通量的无传感器交流驱动器,不仅适用于IM驱动器,而且适用于永磁同步电动机驱动器(表面安装永磁体和内部永磁体) )。针对定点DSP上实现的IM驱动器的无传感器控制,提出并测试了一种自调试算法。实验结果证明了该方法的可行性和有效性。

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