基于模糊控制器的小型单机风力机无传感器最优功率提取

R. I. Putri, F. Ronilaya, M. Rifa’i, L. Jasa, A. Priyadi, P. Mauridhi Hery
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引用次数: 0

摘要

风力涡轮机作为发电厂的技术发展非常迅速,因为可再生能源对环境友好,并且有无限的可用性。在未并网地区使用风能转换系统对社区有很大的好处,其中小型独立风力涡轮机系统由于投资成本低且易于控制以提高效率而非常适合农村地区。然而,风速对风力机的输出功率有很大的干扰。通过提取最大功率点来获得最优功率,可以提高风力机的效率。本文提出了一种基于模糊控制器(FLC)的无机械传感器永磁同步发电机(PMSG)小型单机风力发电机组最优抽电控制方法。模糊逻辑根据不受控制的整流器输出电压和电流,通过对dc/dc变换器的占空比控制来确定最佳功率点。仿真结果表明,FLC比摄动观察(P&O)方法能捕获更大的输出功率,具有更好的性能。风速为10 m/s时,FLC法可提取4200W的风力,P&O法可提取3700W的风力。此外,FLC可以根据风速变化提取最优功率,不产生振荡。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Sensorless Optimum Power Extraction for Small Scale Stand Alone Wind Turbine Based on Fuzzy Controller
The technology of wind turbines as electric power plants has developed very rapidly because renewable energy is environmentally friendly and has unlimited availability. The use of wind energy conversion systems for the grid non-connected areas has greatly benefits for the community, in which small scale standalone wind turbine systems are well suited to rural areas due to low investment costs and are easily controlled to improve efficiency. However, wind speed highly interfere the output power of the wind turbine. The efficiency of wind turbine can be improved by extracting the maximum power point to get optimal power. In this paper will propose an optimal power extraction control for small scale stand alone wind turbine using permanent magnet synchronous generator (PMSG) based on fuzzy logic controller (FLC) without mechanical sensors. Fuzzy logic determines the optimum power point through the duty cycle controlling on the dc/dc converter based on the uncontrolled rectifier output voltage and current. Based on the simulation results, FLC has better performance, where FLC can capture greater output power than perturb & observe (P&O) method. At wind speeds of 10 m/s, the use of FLC can extract wind power of 4200W while the P&O method is 3700W. In addition, FLC can extract optimum power to wind speeds variation and generate no oscillations.
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