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Carrier signal injection method in three shunt sensing inverter for sensorless AC machine drive

机译:无传感器AC机驱动器三分分流检测逆变器中的载体信号注入方法

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In this paper, the voltage signal injection at the half of the carrier frequency is proposed for sensorless control in a Three Shunt Sensing Inverter (TSSI). As the injection frequency in sensorless control, high frequency is preferred for a rapid angle estimation and small audible noise. However, the maximum sampling frequency for the current reconstruction is limited to the carrier frequency in TSSI. Using 120° OFF Discontinuous Pulse Width Modulation (DPWM) with the high carrier frequency, the average switching frequency is set as two-third of the carrier frequency and the injection frequency is the half of it. Since the switching loss of the d-axis injection is up to 32% larger than the one of the q-axis injection, the q-axis injection method is proposed. The switching loss, conduction loss, copper loss, and iron loss are analyzed and the power losses are compared according to the injection axis from the simulations and experimental results.
机译:在本文中,提出了一半的载波频率下的电压信号注入,用于三个分流检测逆变器(TSSI)中的无传感器控制。作为无传感器控制中的注射频率,优选高频估计和小可听噪声的高频率。然而,当前重建的最大采样频率限于TSSI中的载波频率。使用具有高载波频率的120°OFF不连续脉冲宽度调制(DPWM),平均开关频率设定为载波频率的三分之二,并且注射频率是其中的一半。由于D轴注入的开关损耗高于比Q轴注射之一大的32%,因此提出了Q轴注射方法。分析开关损耗,传导,铜损和铁损,并根据喷射轴与模拟和实验结果进行比较电源损耗。

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