首页> 外文会议>Annual Conference of the IEEE Industrial Electronics Society >Analysis of Brushless Wound Rotor Synchronous Generator with Unity Power Factor Rectifier for Series Offshore DC Wind Power Collection
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Analysis of Brushless Wound Rotor Synchronous Generator with Unity Power Factor Rectifier for Series Offshore DC Wind Power Collection

机译:机组功率因数整流器无刷绕线转子同步发电机的离岸直流风电系列分析

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Due to various advantages offshore wind farms are getting higher attention from industrial and research perspectives. The DC power collection topologies are preferred as they reduce both system and transmission cost in case of offshore power transmission. Offshore wind turbines are expected to be lighter, smaller and prone to lesser maintenance. Permanent magnet synchronous generator (PMSG), though most popular choice, they are getting more and more expensive due to the availability of raw earth permanent magnets (PM). Thus a wound rotor synchronous generator (WRSG), with brushless excitation is a probable alternative to PMSG. For front-end converters three-phase-diode bridge rectifiers are suitable for high power ratings but they are not controllable. It requires additional auxiliary circuitry or to be followed by a DC-DC converter, in order to be used for DC power collection. With these regards, this study is carried out for the scenario of series connected DC power collection of wind turbines with brushless excited WRSG. For the front-end converter, an auxiliary circuit based three phase diode bridge unity-power-factor rectifier is selected. The brushless excitation ensures the generator terminal voltage regulation. The rectifier controls DC link voltage, improves the power factor and reduces the generator output current total harmonic distortion (THD). The control of converter is done based on hysteresis current control. To verify its efficacy, the proposed system is simulated under various dynamic wind speed scenarios.
机译:由于各种优势,从工业和研究的角度来看,海上风电场受到了越来越多的关注。首选直流集电拓扑,因为在海上输电的情况下,它们既降低了系统成本,又降低了输电成本。海上风力涡轮机有望更轻,更小并且易于维护。永磁同步发电机(PMSG)尽管是最受欢迎的选择,但由于使用了原始稀土永磁体(PM),它们变得越来越昂贵。因此,具有无刷励磁的绕线转子同步发电机(WRSG)可能是PMSG的替代方案。对于前端转换器,三相二极管桥式整流器适用于高功率额定值,但它们不可控。它需要附加的辅助电路,或在其后跟随一个DC-DC转换器,以便用于DC功率收集。考虑到这些方面,本研究针对具有无刷励磁WRSG的风力涡轮机的串联直流电收集场景进行。对于前端转换器,选择了基于辅助电路的三相二极管桥单位功率因数整流器。无刷励磁可确保发电机端子电压调节。整流器控制直流母线电压,提高功率因数并降低发电机输出电流的总谐波失真(THD)。转换器的控制基于磁滞电流控制来完成。为了验证其有效性,在各种动态风速情况下对提出的系统进行了仿真。

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