Performance modelling of a small-scale wind and solar energy hybrid system

Zhengnan Cao, Fergal O'Rourke, W. Lyons
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引用次数: 5

Abstract

Wind and solar energy have become very popular options for energy conversion over the past years. This is particularly true for wind energy which is experiencing significant growth year-on-year. A significant part of this growth is at large-scale commercial power systems. However, there is a growing interest in small-scale renewable energy technologies to capture this intermittent but plentiful resource. A combined wind and solar energy hybrid system utilises two renewable energy resources, in doing so diversifies supply and as a result will make the system power output more stable and continuous. In this paper the details of the hybrid system model, using Matlab Simulink, are given. The model developed, is discussed giving key details on the characteristics of each part of the wind and solar energy hybrid system. The hybrid system model developed includes four subsystems: the solar energy subsystem, the wind energy subsystem, the inverter subsystem, the battery storage subsystem. The renewable energy resource is converted, using the wind turbine and photovoltaic panels to AC, via an inverter, which supplies the load. Any surplus energy is stored in the battery. It was found, from the simulation that the maximum power can be obtained under different circumstances using the developed maximum power point tracking algorithm.
小型风能和太阳能混合系统的性能建模
在过去的几年里,风能和太阳能已经成为非常流行的能源转换选择。风能尤其如此,风能正经历着逐年的显著增长。这种增长的一个重要部分是大规模商业电力系统。然而,人们对小规模可再生能源技术越来越感兴趣,以捕获这种间歇性但丰富的资源。风能和太阳能混合系统利用了两种可再生能源,从而使供应多样化,从而使系统的电力输出更加稳定和连续。本文给出了利用Matlab Simulink建立混合系统模型的详细步骤。该模型开发,讨论给出关键细节的特点,每个部分的风能和太阳能混合系统。所建立的混合系统模型包括四个子系统:太阳能子系统、风能子系统、逆变器子系统、蓄电池储能子系统。使用风力涡轮机和光伏板将可再生能源转换为交流电,通过逆变器提供负载。任何多余的能量都储存在电池中。仿真结果表明,所提出的最大功率点跟踪算法可以在不同情况下获得最大功率。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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