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Flatness based control of the ViENNA-rectifier allowing for reactive power compensation

机译:ViENNA整流器的基于平坦度的控制,允许无功补偿

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Flatness based control of the vienna-rectifier is sketched. A mathematical averaged model of the rectifier is presented and a flat output is exhibited. Trajectories are planned for an equilibrium regime in order to make clear that it is physically impossible to have at the same time sinusoidal currents, an arbitrary phase-angle between voltage and current space vector, and symmetrically charged output capacitors. Calculating the trajectories, especially of the input variables, from the flat output trajectories and their time derivatives reveals this physical restriction of the system. Three possibilities are presented to overcome the problem. Each of them is a trade-off between the requirements, but all of them guarantee sinusoidal current waveforms. The first one ensures symmetrically charged capacitors, while the second and the third allow for reactive power compensation. Simulations on a switched model illustrate the results.
机译:概述了基于平面度的整流器控制。给出了整流器的数学平均模型,并显示了平坦的输出。为平衡状态规划了轨迹,以明确表明在物理上不可能同时具有正弦波电流,电压和电流空间矢量之间的任意相角以及对称充电的输出电容器。从平坦的输出轨迹及其时间导数计算轨迹,尤其是输入变量的轨迹,揭示了系统的这种物理限制。提出了三种可能性来克服该问题。它们中的每一个都是在要求之间进行权衡的,但是它们都保证了正弦电流波形。第一个确保电容器对称充电,而第二个和第三个允许无功补偿。在转换模型上的仿真说明了结果。

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