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A new high frequency injection method based on duty cycle shifting without maximum voltage magnitude loss

机译:一种新的基于占空比移位的高频注入方法,且没有最大电压幅值损失

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The conventional high frequency signal injection method is to superimpose a high frequency voltage signal to the commanded stator voltage before space vector modulation. Therefore, the magnitude of the voltage used for machine torque production is limited. In this paper, a new high frequency injection method, in which high frequency signal is generated by shifting the duty cycle between two neighboring switching periods, is proposed. This method allows injecting a high frequency signal at half of the switching frequency without the necessity to sacrifice the machine fundamental voltage amplitude. This may be utilized to develop new position estimation algorithm without involving the inductance in the medium to high speed range. As an application example, a developed inductance independent position estimation algorithm using the proposed high frequency injection method is applied to drive a synchronous reluctance machine. Simulation and experimental results are given to support the proposed new approach.
机译:传统的高频信号注入方法是在空间矢量调制之前将高频电压信号叠加到命令的定子电压上。因此,用于机器转矩产生的电压的大小受到限制。在本文中,提出了一种新的高频注入方法,其中通过在两个相邻开关周期之间切换占空比来生成高频信号。这种方法允许以开关频率的一半注入高频信号,而不必牺牲电机的基本电压幅度。这可以用于开发新的位置估计算法,而不会涉及中高速范围内的电感。作为一个应用示例,使用提出的高频注入方法开发的与电感无关的位置估计算法可用于驱动同步磁阻电机。仿真和实验结果给出了支持该新方法的方法。

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