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Current-Source Topology for Wind Turbines Capable of Providing Leading Power Factor While Reducing Line Current Harmonics

机译:风力涡轮机的电流源拓扑,能够在减少线电流谐波的同时提供领先的功率因数

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The paper presents a Current-Source Inverter topology conceived for multi-megawatt wind turbines. The proposed scheme utilizes two series-connected three-phase inverters employing fully controllable switches and a proper interconnection transformer with the Mains. In order to improve the efficiency and allow the use of high power devices, the inverters are switched at mains frequency. The axial flux permanent magnet generator is directly coupled to the turbine (gearless solution) and possesses very low leakage inductance. The overall control technique allows to impose independently two desired quantities selected out of the set of three composed by: a) The total average voltage at the DC input side of the inverters; b) The power factor at the Mains interconnection point, which can be chosen unitary leading or lagging; c) The amount of the 5th and 7th harmonics in the Mains line currents. In specific operating points of the turbine a significant reduction of two such harmonics can be already achieved without additional filters and/or active harmonic compensation. Nevertheless the introduction of an active harmonic compensator can achieve proper harmonic reduction - also up to higher orders - more independently and on a wider range of operating conditions. Experimental results, obtained from a 10 kW prototype with an axial flux permanent magnet generator are presented.
机译:本文介绍了一个适用于多兆瓦风力涡轮机的电流源逆变器拓扑。所提出的方案利用两个连通的三相逆变器,采用完全可控开关和具有电源的适当互连变压器。为了提高效率并允许使用高功率器件,逆变器以电源频率切换。轴向磁通永磁发电机直接耦合到涡轮机(无齿轮溶液),并具有非常低的漏电感。整体控制技术允许独立地施加出由逆变器的DC输入侧的三个组成的三个中选择的两个所需量; b)电源互连点的功率因数,可以选择单一的通道或滞后; c)电源线电流中的第5和第7次谐波的金额。在涡轮机的特定操作点中,可以已经实现了两个这样的谐波的显着减少,而无需额外的滤波器和/或主动谐波补偿。然而,引入主动谐波补偿器可以实现适当的谐波减少 - 也取决于更高的订单 - 更独立地和更广泛的操作条件。提出了一种通过具有轴向磁通永磁发电机的10kW原型获得的实验结果。

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