一种新型并联风电机组电压平衡电路的研究

A. Elserougi, Otavio Bertozzi, A. Massoud, Shehab Ahmed
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引用次数: 1

摘要

风力发电机并联在大功率应用中是非常有利的。为了使基于wt的并联能量转换系统成功运行,需要在收集点有一个良好调节的电压。由于风速的变化,每个小波变换产生的电压可能各不相同。传统的解决方案使用全额定功率的调节转换器。本文提出了一种新的概念,即使用全额定非控制整流桥进行交直流转换,并使用部分额定全控制整流桥作为电压调谐器,以保证最大功率点直流电流通过并联支路。该系统简单、经济、可靠、高效。该系统的主要缺点是在交流侧需要滤波器和无功补偿器,以确保小波变换发生器的可接受性能。此外,直流侧还需要平滑电抗器来滤波传输的直流电流。建立了仿真模型来验证所提概念,仿真结果表明了该方法的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Investigation of a New Voltage Balancing Circuit for Parallel-connected Offshore PMSG-based Wind Turbines
Parallel connection of wind turbines (WTs) is beneficial in high-power applications. For successful operation of parallel WT-based energy conversion systems, a well-regulated voltage is needed at the collection point. Due to wind speed variation, the generated voltage from each WT may differ from one to another. Conventional solutions use regulating converters with full power rating. In this paper, a new concept is presented which depends on using fully-rated uncontrolled rectifier bridges for AC-DC conversion, and partially-rated fully-controlled bridge rectifiers which are used as voltage tuners to guarantee the flow of desired maximum power point DC currents through the parallel connected branches. The proposed system is simple, cost effective, reliable and efficient. The main drawback of the proposed system is the critical need for filters and VAR compensators on the AC side to ensure acceptable performance of the WT generator. Also, smoothing reactors are needed on the DC side for filtering of the transmitted DC current. A simulation model has been built to validate the proposed concept, and the simulation results show the effectiveness of the approach.
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