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首页> 外文期刊>Journal of power electronics >Consideration of the Carrier Based Signal Injection Method in Three Shunt Sensing Inverters for Sensorless Motor Control
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Consideration of the Carrier Based Signal Injection Method in Three Shunt Sensing Inverters for Sensorless Motor Control

机译:对无传感器电机控制的三个并联感应逆变器中基于载波的信号注入方法的考虑

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This paper considers a carrier based signal injection method for use in the three shunt sensing inverter (TSSI) for sensorless motor control. It also analyzes the loss according to the injection axis of the voltage signal. To remove both the phase current and rotor position sensors, a sensorless method and a phase current reconstruction method can be simultaneously considered. However, an interaction between the two methods can be incurred when both methods inject voltage signals simultaneously. In this paper, a signal injection based sensorless method with the 120 degrees OFF Discontinuous PWM (DPWM) is implemented in a TSSI to avoid this interaction problem. Since one leg does not have a switching event for one sampling period in the 120 degrees OFF DPWM, the switching loss is altered according to the injection axis. The switching loss in the d-axis injection case can be up to 32% larger than that in the q-axis injection case. Other losses according to the injection axis are also analyzed.
机译:本文考虑了一种基于载波的信号注入方法,该方法用于无传感器电机控制的三并联感应逆变器(TSSI)。它还根据电压信号的注入轴分析损耗。为了同时去除相电流和转子位置传感器,可以同时考虑无传感器方法和相电流重构方法。但是,当两种方法同时注入电压信号时,可能会引起两种方法之间的相互作用。在本文中,在TSSI中实现了一种基于信号注入的无传感器方法,该方法具有120度OFF不连续PWM(DPWM),从而避免了这种交互问题。由于在120度OFF DPWM中,一个分支在一个采样周期内没有开关事件,因此开关损耗会根据注入轴而变化。 d轴注入情况下的开关损耗可能比q轴注入情况下的开关损耗大32%。还分析了根据注射轴的其他损失。

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