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Control System with Field Weakening of Synchronous Motor Drive

机译:同步电动机驱动器弱磁控制系统

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Improving of dynamic performance of a control system of a synchronous drive with field weakening is shown. The controllers of the angular speed of the rotor of a synchronous machine, d and q components of the stator current of the control system have synthesized using the concept of inverse dynamics problems and minimization of local functionalities in the form of acceleration energy and kinetic energy. Mathematical modelling has established that the application of control algorithms of non-traditional structure provides high dynamic characteristics in the entire control range and robustness to the action of parametric and coordinate perturbations. The need of control adaptation and compensation of signals of mutual influence is excluded. Limitation of the output voltage and current of the stator in the second control zone is carried out by using the mode of attenuation of the magnetic field and setting the required trajectory of the angular velocity of the rotor of the synchronous motor.
机译:示出了通过弱磁来改善同步驱动器的控制系统的动态性能。同步电机的转子角速度的控制器,控制系统的定子电流的d和q分量已使用逆动力学问题和以加速能和动能形式最小化局部功能的概念进行了综合。数学建模已经确定,非传统结构的控制算法的应用在整个控制范围内提供了高动态特性,并且对参数和坐标摄动的作用具有鲁棒性。排除了需要进行控制自适应和补偿相互影响的信号的需求。通过使用磁场的衰减模式并设置同步电动机转子的角速度的所需轨迹来限制第二控制区域中定子的输出电压和电流。

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