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Interconnection of Direct-Drive Wind Turbines Using a Series-Connected DC Grid

机译:使用串联直流电网的直驱式风力发电机组的互连

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This paper presents a “distributed high-voltage dc (HVDC) converter” for offshore wind farms. The proposed converter topology allows series interconnection of wind turbines with the need of neither ac transformer nor offshore platform at the sending end. Each wind turbine is equipped with a 5-MW permanent-magnet synchronous generator and an ac–dc–dc converter. The converter topology is a diode rectifier (ac–dc) cascaded with a single-switch step-down converter (dc–dc). The dc–dc stage allows the current to flow at all times in the dc link while simultaneously regulating generator torque. The inverter station, located onshore, is a thyristor-based converter that performs dc link current regulation. It also regulates the HVDC link voltage through supervisory inverter controls. A complete wind farm is simulated using the PSCAD/EMTDC software package. The 150-MW wind farm is modelled using six units of 25 MW with a rated dc link voltage of 125 kV at 1.2 kA. The simulation demonstrates the stable operation of the proposed configuration where each turbine is able to independently perform peak power tracking.
机译:本文介绍了一种用于海上风电场的“分布式高压直流(HVDC)转换器”。拟议的转换器拓扑结构允许风力涡轮机的串联互连,而无需在发送端使用交流变压器或海上平台。每个风力涡轮机都配备有5兆瓦永磁同步发电机和一个AC-DC-DC转换器。转换器拓扑是一个二极管整流器(ac-dc)与一个单开关降压转换器(dc-dc)级联。 dc-dc级允许电流一直流经dc链路,同时调节发电机转矩。岸上的逆变器站是基于晶闸管的转换器,可进行直流链路电流调节。它还通过监控逆变器控制来调节HVDC链路电压。使用PSCAD / EMTDC软件包可以模拟完整的风电场。 150兆瓦的风电场使用六个25兆瓦的机组进行建模,额定直流链路电压为125 kV,额定电流为1.2 kA。仿真演示了所提出配置的稳定运行,其中每个涡轮机都能够独立执行峰值功率跟踪。

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