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An intelligent maximum power extraction algorithm for inverter-based variable speed wind turbine systems

机译:基于逆变器的变速风力涡轮机系统的智能最大功率提取算法

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摘要

This paper focuses on the development of maximum wind power extraction algorithms for inverter-based variable speed wind power generation systems. A review of existing maximum wind power extraction algorithms is presented in this paper, based on which an intelligent maximum power extraction algorithm is developed by the authors to improve the system performance and to facilitate the control implementation. As an integral part of the max-power extraction algorithm, advanced hill-climb searching method has been developed to take into account the wind turbine inertia. The intelligent memory method with an on-line training process is described in this paper. The developed maximum wind power extraction algorithm has the capability of providing initial power demand based on error driven control, searching for the maximum wind turbine power at variable wind speeds, constructing an intelligent memory, and applying the intelligent memory data to control the inverter for maximum wind power extraction, without the need for either knowledge of wind turbine characteristics or the measurements of mechanical quantities such as wind speed and turbine rotor speed. System simulation results and test results have confirmed the functionality and performance of this method.
机译:本文重点研究基于逆变器的变速风力发电系统的最大风能提取算法的开发。本文对现有的最大风能提取算法进行了综述,在此基础上,作者开发了一种智能的最大风能提取算法,以提高系统性能并方便控制实现。作为最大功率提取算法的组成部分,已开发出先进的爬坡搜索方法,以考虑到风力涡轮机的惯性。本文介绍了一种具有在线训练过程的智能存储方法。所开发的最大风能提取算法具有以下功能:基于误差驱动控制提供初始功率需求;在风速可变时搜索最大风力涡轮机功率;构建智能存储器;以及应用智能存储器数据来控制逆变器以实现最大功率。无需提取风力涡轮机特性或测量机械量(例如风速和涡轮转子速度)的知识。系统仿真结果和测试结果证实了该方法的功能和性能。

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