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A novel concept of offshore wind-power collection and transmission system based on cascaded converter topology

机译:基于级联换流器拓扑的海上风电集输系统新概念

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This paper presents a new concept for the grid integration of large-scale offshore wind farms. In the offshore wind farm, the wind turbines are integrated into the offshore DC collector grid by a cascaded converter. The high-voltage level for the high-voltage direct current (HVDC) transmission purpose is built by series connections of low voltage modules, without the use of an offshore step-up substation. The output power of each module is controlled by the switching of the related half-bridge, and a modified straightforward voltage balancing strategy is proposed to balance the storage capacitor voltages in the turbines. Supplementary balancing strategies are also presented to assist in balancing the capacitor voltages, when the differences in the wind velocities flowing to the turbines become larger. Because of the stable capacitor voltages, self-commutated voltage source converter (VSC) is adopted as the onshore inverter station connecting the HVDC link and the onshore AC grid. The VSC station not only regulates the DC-bus voltage of the HVDC link, but also provides reactive power compensation to the onshore grid. The time-domain simulation results show that the proposed offshore wind-power collection and transmission system provides a new option for integrating large-scale offshore wind farms. Copyright © 2012 John Wiley & Sons, Ltd.
机译:本文提出了大规模海上风电场并网的新概念。在海上风电场中,风力涡轮机通过级联转换器集成到海上DC收集器电网中。用于高压直流(HVDC)传输的高压水平是通过低压模块的串联连接建立的,而无需使用海上升压变电站。每个模块的输出功率由相关半桥的开关控制,并提出了一种经过修改的简单的电压平衡策略,以平衡涡轮中的存储电容器电压。当流向涡轮的风速差异变大时,还提出了补充平衡策略,以帮助平衡电容器电压。由于电容器电压稳定,因此采用自换向电压源转换器(VSC)作为连接HVDC链路和岸上交流电网的岸上逆变器站。 VSC站不仅调节HVDC链路的DC总线电压,而且还为陆上电网提供无功功率补偿。时域仿真结果表明,提出的海上风电集输系统为大规模海上风电场的整合提供了新的选择。版权所有©2012 John Wiley&Sons,Ltd.

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