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Average Current Mode Control of Three-Phase Boost Rectifiers with Low Harmonic Distortion Applied to Small Wind Turbines

机译:具有低谐波失真的三相升压整流器的平均电流模式控制,应用于小型风力涡轮机

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This paper presents the application of average current mode control to reduce the THD_i and increase the PF in a Three-Phase Boost Rectifier driving a small wind turbine. It is used as the input stage of small wind turbines with permanent magnet synchronous generators operating at variable speed. The Boost Rectifier output is connected to an inverter which injects the energy to a distribution power grid. The operation in discontinuous conduction mode allows significantly reducing the Total Harmonic Distortion of the current in the small wind turbine. However, it is necessary to add an input filter so that the switching ripple doesn't affect the small wind turbine. It is evaluated the convenience of the current sensors placement in the DC side of the rectifier or at the output of the generator. The results demonstrate that it is better to place the sensors at the output of the generator, because it is achieved a smaller THD_i and a higher PF.
机译:本文介绍了平均电流模式控制的应用,以减少THD_I,并在驾驶小型风力涡轮机的三相升压整流器中增加PF。它用作小型风力涡轮机的输入级,具有以可变速度运行的永磁同步发电机。升压整流器输出连接到逆变器,该逆变器将能量注入分配电网。不连续传导模式的操作允许显着降低小型风力涡轮机中电流的总谐波失真。但是,有必要添加输入滤波器,使得切换纹波不会影响小型风力涡轮机。评估电流传感器在整流器的直流侧或发电机的输出处放置的便利性。结果表明,最好将传感器放置在发电机的输出处,因为它实现了更小的THD_I和更高的PF。

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