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A Sensorless Drive by Applying Test Pulses Without Affecting the Average-Current Samples

机译:通过施加测试脉冲而不影响平均电流采样的无传感器驱动

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The rotor position of a salient-pole permanent-magnet synchronous machine (PMSM) at standstill or rotating at low speed is often estimated by measuring the responses on high-frequency test signals. In some drives, the rotor position is computed by measuring important current ripples that are generated by supplying the PMSM periodically with high-frequency voltage test pulses. Besides these ripples, undesired distortions in the average-current samples have been measured. Simulation results have revealed that these distortions are caused by a test signal, as it produces a nonzero voltage deviation from the steady-state stator voltage. In this paper, a low-speed sensorless strategy is discussed where a strong reduction of the aforementioned distortions is obtained by adapting the test signals to the steady-state stator voltage. The main assumption is that an accurate estimation of the steady-state voltage is made by using the controller output. The computation of the adaptive test signals is done by taking into account the voltage restriction of the dc-bus voltage. Simulation results, as well as experimental measurements, indicate the effectiveness of the adaptive test signals in a sensorless controlled interior PMSM.
机译:凸极永磁同步电机(PMSM)在静止或低速旋转时的转子位置通常是通过测量高频测试信号的响应来估算的。在某些驱动器中,转子位置是通过测量重要的电流纹波来计算的,这些纹波是通过向PMSM定期提供高频电压测试脉冲而产生的。除了这些纹波,还测量了平均电流样本中不希望的失真。仿真结果表明,这些失真是由测试信号引起的,因为它会产生与稳态定子电压非零的电压偏差。在本文中,讨论了一种低速无传感器策略,其中通过使测试信号适应于稳态定子电压,可以大大降低上述失真。主要假设是通过使用控制器输出来精确估算稳态电压。自适应测试信号的计算是通过考虑直流母线电压的电压限制来完成的。仿真结果以及实验测量结果表明,在无传感器控制的内部PMSM中,自适应测试信号的有效性。

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