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Reduction of Injection Voltage in Signal Injection Sensorless Drives Using a Capacitor-Integrated Inverter

机译:使用电容集成式逆变器降低无信号注入式信号驱动器中的注入电压

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In signal injection sensorless drives, the injection voltage cannot be reduced under a certain value. The lower limit of the injection voltage is mainly enforced by the inverter nonlinearity that causes distortion of the injection voltage and degradation of the position estimation performance. After analyzing the inverter nonlinearity during the voltage injection, it is revealed that parasitic capacitances of insulated-gate bipolar transistors have positive effects on inverter output linearity and sensorless control. Based on this analysis, this paper proposes a method to reduce the injection voltage by connecting additional capacitors to the output terminals of the inverter. Simulation and experimental results are provided to verify the effectiveness of the proposed idea. In the experiments, using the capacitor-integrated inverter, it is shown that the injection voltage can be reduced by more than half without degrading the position estimation performance.
机译:在无传感器信号注入驱动器中,注入电压不能降低到一定值以下。注入电压的下限主要由逆变器非线性引起,该非线性导致注入电压的失真和位置估计性能的下降。在分析电压注入过程中的逆变器非线性之后,我们发现绝缘栅双极型晶体管的寄生电容对逆变器输出线性和无传感器控制具有积极影响。基于此分析,本文提出了一种通过在逆变器的输出端子上连接额外的电容器来降低注入电压的方法。仿真和实验结果提供了验证所提出的想法的有效性。在实验中,使用电容器集成逆变器表明,注入电压可以降低一半以上,而不会降低位置估计性能。

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