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A current control strategy for a three-phase shunt active power filter using second-order sliding mode

机译:使用二阶滑模的三相并联有源电力滤波器的电流控制策略

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A combined control strategy of the three-phase shunt active power filter that is connected to a non-linear load network is proposed. The filter consists of a voltage source inverter on fully controlled switches, capacitor storage, and a first-order three-phase RL filter. The decomposition of the object of study according to the rates of motion of the dynamic system was performed. The fast subsystem is a circuit of compensation current control, the slow subsystem performs stabilization of the capacitor voltage. A double twisting algorithm to control the DC voltage is used. In it, to calculate the “operator variable”, in addition to the error of the capacitor storage voltage to increase the speed is also used its derivative. A two-dimensional sliding manifold to generate the compensating current is used. Each component of this surface is a linear combination of components of two-dimensional vectors. The first vector is the current error of the RL filter, the coordinates of the second are locally equivalent to the derivative of this error. The calculation of the instantaneous value of both components of the second vector by entering the second order sliding mode was forced. A simulation model is developed and the results of simulation are analyzed. A comparison of the proposed strategy with the traditional PI-regulation by the criteria of the duration of the transition process and the coefficient of harmonic distortions in the current consumed from the network is made.
机译:提出了一种与非线性负载网络相连接的三相并联有源电力滤波器的组合控制策略。该滤波器由一个位于全控开关上的电压源逆变器,一个电容器存储和一个一阶三相RL滤波器组成。根据动态系统的运动速率对研究对象进行分解。快速子系统是补偿电流控制电路,慢速子系统是电容器电压的稳定化。使用双重扭曲算法来控制直流电压。在其中,为了计算“运算变量”,除了使用电容器存储电压的误差来提高速度外,还使用了它的导数。使用二维滑动歧管来产生补偿电流。该表面的每个分量是二维向量的分量的线性组合。第一个向量是RL滤波器的当前误差,第二个向量的坐标局部等效于该误差的导数。强制通过进入二阶滑动模式来计算第二矢量的两个分量的瞬时值。建立了仿真模型并分析了仿真结果。通过过渡过程的持续时间和从网络消耗的电流中的谐波失真系数,将提出的策略与传统的PI调节进行了比较。

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