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首页> 外文期刊>IEEE Transactions on Industry Applications >Wind Turbine Current-Source Converter Providing Reactive Power Control and Reduced Harmonics
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Wind Turbine Current-Source Converter Providing Reactive Power Control and Reduced Harmonics

机译:风力发电机电流源转换器,提供无功功率控制并降低谐波

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This paper presents a current-source inverter topology that is suitable for multi-megawatt wind turbines. The proposed scheme utilizes two series-connected three-phase inverters that employ fully controllable switches and a proper interconnection transformer with the mains. In order to improve the efficiency and to allow the use of high-power devices, the inverters are switched at the mains frequency. The axial-flux permanent-magnet (PM) generator is directly coupled to the turbine (gearless solution), and its design reduces the dependence of the output voltage on the load current. The overall control technique allows to independently impose two desired quantities that can be selected out of the set of three composed of: 1) the total average voltage at the dc side of the inverters, which is directly related to the turbine speed; 2) the fundamental power factor at the mains interconnection point, which can be chosen unitary, leading, or lagging; and 3) the amplitude of one desired component of the spectrum of the mains line currents. The two chosen quantities univocally determine the third one. At specific operating points of the turbine, a significant reduction of the fifth and seventh harmonics can already be achieved without additional filters and/or active harmonic compensation. Nevertheless, the introduction of an active harmonic compensator is necessary to provide the required harmonic reduction (also up to higher orders) more independently and on a wider range of operating conditions. The almost independent regulation of the dc-link current allows further control of the average generator torque. Experimental results that are obtained from a 10-kW prototype with an axial-flux PM generator are presented.
机译:本文提出了一种适用于多兆瓦级风力涡轮机的电流源逆变器拓扑。所提出的方案利用两个串联连接的三相逆变器,这些逆变器采用完全可控的开关以及与电源的适当互连变压器。为了提高效率并允许使用大功率设备,逆变器以市电频率进行开关。轴向磁通永磁体(PM)发电机直接连接到涡轮机(无齿轮解决方案),其设计降低了输出电压对负载电流的依赖性。总体控制技术允许独立施加两个所需的数量,这些所需的数量可以从以下三个组成的一组中选择:1)逆变器dc侧的总平均电压,与涡轮速度直接相关; 2)在电源互连点的基本功率因数,可以选择单一,超前或滞后; 3)干线电流频谱中一个所需分量的幅度。所选择的两个数量明确地确定了第三个数量。在涡轮机的特定运行点,无需附加滤波器和/或有源谐波补偿,就已经可以实现第五谐波和第七谐波的显着降低。然而,必须引入有源谐波补偿器,以在更宽的工作条件范围内更独立地提供所需的谐波降低(也可以达到更高阶)。直流母线电流的几乎独立的调节允许进一步控制平均发电机转矩。给出了从带有轴向磁通PM发电机的10 kW原型获得的实验结果。

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