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A Novel Method for Compensating Inverter Nonlinearity Effects in Carrier Signal Injection-Based Sensorless Control From Positive-Sequence Carrier Current Distortion

机译:从正序载波电流失真中补偿基于载波信号注入的无传感器控制中逆变器非线性影响的新方法

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摘要

In conventional rotating carrier signal injection-based sensorless method, a positive-sequence carrier current has no use, and only the negative-sequence carrier current is used to estimate the rotor position information. The inverter nonlinearity effects, however, distort the negative-sequence carrier current and result in inaccurate position estimation. With the aid of theoretical analysis and experimental measurement, it is proven in this paper that the positive-sequence carrier current distortion resulting from inverter nonlinearity effects can be used to compensate the influence of inverter nonlinearity on negative-sequence carrier current. Hence, a new online postcompensation scheme is developed in this paper by utilizing the distortion of positive-sequence carrier current due to inverter nonlinearity effects. The proposed method can be easily implemented on standard voltage source inverter without any offline commissioning process or hardware modification. Experimental results confirm the effectiveness of the proposed method in suppressing the influence of inverter nonlinearity on the rotor position estimation.
机译:在传统的基于旋转载波信号注入的无传感器方法中,没有使用正序载波电流,而仅使用负序载波电流来估计转子位置信息。但是,逆变器的非线性效应会使负序载波电流失真,并导致位置估计不准确。借助于理论分析和实验测量,证明了逆变器非线性效应引起的正序载波电流畸变可以用来补偿逆变器非线性对负序载波电流的影响。因此,本文利用逆变器非线性效应引起的正序载波电流畸变,提出了一种新的在线后补偿方案。所提出的方法可以容易地在标准电压源逆变器上实施,而无需任何离线调试过程或硬件修改。实验结果证实了该方法在抑制逆变器非线性对转子位置估计的影响方面的有效性。

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