太阳能/风能转换系统智能电网集成建模与控制

E. Natsheh, A. Albarbar, J. Yazdani
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引用次数: 69

摘要

性能优化、系统可靠性和运行效率是智能电网系统的关键特征。本文提出了一种新型的光伏/WT智能并网系统模型。它包括光伏阵列、风力发电机、异步(感应)发电机、控制器和变流器。该模型采用MATLAB/SIMULINK软件包实现。在最大功率点跟踪器(MPPT)实现的基础上,采用扰动与观测(P&O)算法实现发电功率最大化。研究了该模型在不同工况下的动态特性。太阳辐照度、温度和风速数据是从位于曼彻斯特市中心的28.8千瓦太阳能发电系统中收集的。所开发的系统使用实时测量的参数作为输入。该模型及其控制策略为智能电网性能优化提供了一种合适的工具。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Modeling and control for smart grid integration of solar/wind energy conversion system
Performance optimization, system reliability and operational efficiency are key characteristics of smart grid systems. In this paper a novel model of smart grid-connected PV/WT hybrid system is developed. It comprises photovoltaic array, wind turbine, asynchronous (induction) generator, controller and converters. The model is implemented using MATLAB/SIMULINK software package. Perturb and observe (P&O) algorithm is used for maximizing the generated power based on maximum power point tracker (MPPT) implementation. The dynamic behavior of the proposed model is examined under different operating conditions. Solar irradiance, temperature and wind speed data is gathered from a grid connected, 28.8kW solar power system located in central Manchester. Real-time measured parameters are used as inputs for the developed system. The proposed model and its control strategy offer a proper tool for smart grid performance optimization.
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