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Sizing and Operational Loading of Reactive Power Compensators for Grid Connected Wind Farms Considering Various Transmission Options

机译:考虑各种输电方式的并网风电场无功补偿器的尺寸和运行负荷

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The analysis of reactive demands of high voltage transmission links connecting wind farms to the central grid is considered in this paper. Both High Voltage Alternating Current (HVAC), and High Voltage Direct Current (HVDC) options as well as overhead, and cable transmission alternatives are considered in the analysis. Therefore, the presented work is applicable for both onshore, and offshore installations considering various transmission technologies. The sizing of the required reactive power compensators for the transmission system is the main objective of the manuscript. The target is to keep acceptable operating voltage limits through appropriate amounts of reactive power injection or absorption at the wind farms interface bus. The considered wind farm is made up with Doubly Fed Induction Generators (DFIGs). Based on the reactive power capability limits of the DFIGs comprising the wind farm, the minimum rating, and type of external reactive power compensating devices are determined for various transmission options. In addition, the reactive power loading on the compensators at various operating conditions of the wind farm is determined. The salient conclusions are listed in the results, and conclusions sections.
机译:本文考虑了将风电场连接到中央电网的高压输电线路的无功需求分析。分析中同时考虑了高压交流电(HVAC)和高压直流电(HVDC)选项以及开销和电缆传输替代方案。因此,考虑到各种传输技术,提出的工作适用于陆上和海上安装。传输系统所需的无功补偿器的尺寸确定是本文的主要目的。目标是通过在风电场接口总线上注入或吸收适当数量的无功功率来保持可接受的工作电压限制。所考虑的风电场由双馈感应发电机(DFIG)组成。基于包括风电场的DFIG的无功功率能力限制,确定各种传输选项的最小额定值和外部无功功率补偿设备的类型。另外,确定在风电场的各种运行条件下补偿器上的无功功率负载。结果和结论部分列出了重要的结论。

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