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Forced commutation for fed current self controlled synchronous motor

机译:馈电自控同步电动机的强制换向

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Generally in speed drive applications, a voltage fed converters, using MOSFET and IGBT power components, are respectively used for low-medium and medium-high powers. In this paper, a current fed converter is considered for drive synchronous motor applications. This type of converters, that uses thyristors power components, is suitable for very large drives in very high powers, which is the aim future of this work. From this point of view, this paper aims to propose a proportional-integral controller for current fed self drive synchronous motor. Mainly a DC current loop to turn on and off thyristors, ensuring the forced commutation, is proposed to solve the problem of non existing back electromotive forces (natural commutation is not possible) when the motor operates at very low speeds. Simulation results show performances of the proposed method. Moreover, the proposed method is implemented by using both DSP and FPGA cards and first experimental results of the energy chain conversion (rectifier, inverter and synchronous motor) are obtained and presented.
机译:通常,在速度驱动应用中,使用MOSFET和IGBT功率分量的电压供给转换器分别用于低介质和中高功率。在本文中,考虑了电流的进料转换器用于驱动同步电动机应用。这种类型的转换器,使用晶闸管功率分量,适用于非常高的功率的非常大的驱动器,这是这项工作的宗旨。从这个角度来看,本文旨在为电流供给自动驱动同步电动机提出比例整体控制器。主要是直流电流回路打开和关闭晶闸管,确保强制换向,建议解决非现有背部电动势的问题(当电动机以非常低的速度运行时,不可能)。仿真结果显示了该方法的性能。此外,所提出的方法是通过使用DSP和FPGA卡来实现的,并获得和呈现能量链转换(整流器,逆变器和同步电动机)的第一实验结果。

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