满足电网规范要求的双馈风力发电机组有功和无功控制

M. Taleb, M. Cherkaoui
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引用次数: 4

摘要

摘要:近年来,风能虽然由于风的时变特性而产生较大的波动,但仍成为可再生能源中重要且有发展前景的能源之一。这些波动影响电网的电能质量,主要是在频率和电压稳定性方面。因此,电网管理人员现在规定了有功和无功功率的动态配置,必须在公共耦合点(PCC)得到尊重,以使风力装置能够支持对电网频率和电网电压的控制。本文详细介绍了双馈感应发电机(DFIG)构成的风力发电系统(WECS)的一种重要形式。采用定子磁链定向的矢量控制概念,实现有功和无功的独立控制,轻松满足电网规范要求。这项工作仅限于通过使用MATLAB-SIMULINK软件比较PI控制的直接和间接方法。除了其有限的鲁棒性外,PI控制器仍然是一个简单易用的解决方案,用于控制WECS农场和电网之间的功率流。然而,应该注意的是,基于电流控制的间接方法在超调率方面提供了更好的结果。这项工作为实现任何其他PQ控制策略奠定了良好的基础。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Active and Reactive Power Control of Doubly Fed Induction Generator Wind Turbines to Answer Grid Codes Requirements
Abstract—Recently, wind energy becomes one of important and promising sources of renewable energy despite its important fluctuations due to wind time varying nature. These fluctuations affect the power quality in the grid, mainly in term of frequency and voltage stability. Thus, Grid Managers are now dictating dynamic profiles for active and reactive powers that must be respected at the Point of Common Coupling (PCC) to make wind installations able to support the control of grid frequency and grid voltage. In this paper, it is detailed one of the most important types of Wind Energy Conversion System (WECS) consisting on Turbine associated with Doubly Fed Induction Generator (DFIG). Vector control concept using stator flux orientation is adopted to allow independent control of active and reactive powers to answer easily Grid Codes requirements. This work is limited to present the PI control with its direct and indirect approaches that are compared by using MATLAB-SIMULINK software. Except its limited robustness, PI Controller stays a simple and easy solution to control the power flow between WECS farms and electrical network. It should be noticed, however, that Indirect approach based on currents control gives better results in term of overshooting rates. This work constitutes a good basis to implement any other PQ control strategy.
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