A sensorless vector drive using self-dynamics for interior permanent magnet machine without external signal injection

Sang-Il Kim, Rae-Young Kim
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Abstract

This paper describes a new sensorless control using self-dynamics without an external signal injection. Instead of the signal injection, it utilizes the self-dynamics of the control loop that inherently adjusts the magnitude of inverters current and voltage in the switching frequency range. Due to no existence of the external signal, the proposed method provides several advantages including reduction of audible noise and core loss, while achieving a good dynamic performance with a high current controller bandwidth. The detail operation principle and the control structure are described, various simulation and experiment results are provided in order to verify the effectiveness and feasibilities.
无外部信号注入的内置式永磁电机无传感器矢量驱动
本文介绍了一种新的无传感器控制方法,该方法采用自动态控制,无需外部信号注入。它利用控制回路的自动态特性,在开关频率范围内固有地调整逆变器电流和电压的大小,而不是信号注入。由于不存在外部信号,该方法具有降低可听噪声和磁芯损耗的优点,同时具有较高的电流控制器带宽,具有良好的动态性能。详细介绍了系统的工作原理和控制结构,并给出了各种仿真和实验结果,以验证系统的有效性和可行性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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