首页> 外文会议>2012 20th International Conference on Electrical Machines. >Identification of time-variant high frequency parameters for sensorless control of PMSM using an internal model principle based high frequency current control
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Identification of time-variant high frequency parameters for sensorless control of PMSM using an internal model principle based high frequency current control

机译:使用基于内部模型原理的高频电流控制来识别用于PMSM的无传感器控制的时变高频参数

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Standstill and low speed self-sensing based field oriented control of PMSM using the high frequency signal injection method requires a sufficient saliency ratio of the high frequency differential inductances of the machine. Therefore these inductances need to be known precisely to be able to guarantee stability of the sensorless control. In order to perform the identification, the conventional field oriented control scheme is extended by additional PI-type controllers in a positive and negative sequence high frequency coordinate system, thus resulting in zero steady state control error in case of superimposed sinusoidal high frequency test current reference values. Moreover the extended control scheme provides a direct demodulation of sine and cosine parts of the high frequency control signals and therefore enables a direct identification of all model parameters relevant for HF injection based sensorless control (differential self- and mutual inductances and high frequency resistances). In contrast to conventional methods, no prerequisites for the parameters or its' dependencies have to be fulfilled.
机译:使用高频信号注入方法对PMSM进行基于静止和低速自感应的磁场定向控制,要求电机的高频差分电感具有足够的显着性。因此,需要精确知道这些电感,以确保无传感器控制的稳定性。为了进行识别,在正负序高频坐标系中,通过附加的PI型控制器扩展了传统的磁场定向控制方案,从而在叠加正弦波高频测试电流参考的情况下导致零稳态控制误差。价值观。此外,扩展控制方案可直接解调高频控制信号的正弦和余弦部分,因此可直接识别与基于HF注入的无传感器控制有关的所有模型参数(差分自感和互感以及高频电阻)。与常规方法相比,不需要满足参数或其依赖项的先决条件。

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