基于信号注入的无传感器策略补偿定子电阻和逆变器非线性的影响

Fabien Gabriel, F. De Belie, P. Druyts, X. Neyt, J. Melkebeek, M. Acheroy
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引用次数: 10

摘要

在电机驱动的无传感器位置估计方法中,电压测试脉冲的注入是一种很有前途的方法。一些论文正在研究和应用该策略,特别是在永磁同步电机(PMSM)低速或静止状态下。近年来,人们提出了一种自适应测试脉冲序列,以减少电流畸变。然而,测试脉冲会受到电压降的影响,例如定子电阻和半导体开关。如果忽略这些压降,电流样品中的畸变就不能完全减小。本文通过对电阻降的估计和补偿,改进了自适应测试脉冲策略。我们还讨论了逆变器非线性的影响。最后,给出了永磁同步电机的实验结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Compensating the influence of the stator resistor and inverter nonlinearities in signal-injection based sensorless strategies
Among the sensorless position estimation methods in electrical machines drives, the injection of voltage test pulses is a promising strategy. Several papers are studying and applying this strategy, in particular for permanent magnet synchronous machine (PMSM) at low speed or standstill. Recently, an adaptive test pulses sequence reducing the current distortions has been proposed. However, the test pulses can be influenced by the voltage drops such as across stator resistor and semiconductor switches. By neglecting these voltage drops, the distortion in the current samples can not be fully reduced. In this paper, we improve the adaptive test pulses strategy by estimating and compensating the resistive drops. We also discuss the impact of the inverter nonlinearities. Finally, we present experimental results on a PMSM.
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