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Modeling and compensation of inverter nonlinearity effects in carrier signal injection-based sensorless control methods from positive sequence carrier current distortion

机译:基于正序载波电流失真的基于载波信号注入的无传感器控制方法中逆变器非线性效应的建模和补偿

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Although the inverter nonlinearity is caused by several different factors, the deadtime and parasitic capacitance effects are major contributors to the carrier signal distortion in carrier signal injection-based sensorless techniques. According to the experiments, this paper establishes the disturbance voltage model of inverter nonlinearity effects for carrier signal injection techniques, which comprises of both fundamental and high-frequency voltage distortion components. With the help of such disturbance voltage model, a new compensation scheme based on the distortion of positive sequence carrier current is developed. Finally, experimental results confirm the effectiveness of proposed method in suppressing the influence of inverter nonlinearity on the rotor position estimation.
机译:尽管逆变器的非线性是由几个不同的因素引起的,但是空载时间和寄生电容效应是基于载波信号注入的无传感器技术中载波信号失真的主要因素。通过实验,建立了载波信号注入技术中逆变器非线性效应的扰动电压模型,该模型由基波和高频电压畸变两部分组成。借助这种干扰电压模型,开发了一种基于正序载波电流失真的新补偿方案。最后,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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