基于VSC-HVDC的交直流并联风电场集成研究

W. Xiaoguang, T. Guangfu
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引用次数: 12

摘要

随着风电在系统总发电量中所占的比重越来越大,风电比重的增大导致了电压不稳定、潮流不合理等问题。风电的巨大需求要求在保证电能质量和交流稳定的同时,提高系统容量。VSC-HVDC快速独立有功和无功控制的能力为电能质量和成功可靠的系统运行提供了重要的好处。本文介绍了一种用于风力发电的交直流并联系统。为了验证风电场运行的基本原理和VSC-HVDC输电的先进控制策略,采用PSCAD\EMTDC软件对5台风力发电机组成的风电场与螺距控制系统和具有相对控制系统的VSC-HVDC输电进行建模,测试控制算法,找出问题,研究系统的不同运行模式,并展示VSC-HVDC将大型风电场集成到电网中的独特能力。仿真结果表明,VSC-HVDC输电是将风电场电力传输到电网的一种很好的方式,同时也有助于交流稳定和电能质量。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Research of AC/DC Parallel Wind Farm Integration Based On VSC-HVDC
With wind power taking up an increasingly important share of the total power generation in the system, the larger proportion of wind power have led to problems such as voltage instability, inappropriate power flows etc. The great demand of wind power requires enhanced system capacity, while securing the power quality and AC stabilization. The capacity of VSC-HVDC for fast independent active and reactive power control provides important benefits regarding power quality and successful and reliable system operation. In this paper the parallel AC-DC system for wind power generation is presented. To verify the basic operation principles of operating wind farm and advanced control strategies of VSC- HVDC transmission, the wind farm consisted of five wind turbines with pitch control systems and the VSC-HVDC transmission with relative control systems are modeled by PSCAD\EMTDC to test control algorithms, to identify problems, to investigate different modes of operation of the system and to demonstrate the unique capability of integrating large wind farm to network by VSC-HVDC. Simulation results show that VSC-HVDC transmission is an excellent tool to transmit power from wind farm to a network and at the same time it will contribute to AC stabilization and power quality.
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