利用实时仿真工具分析太阳能和风车

M. Pushpavalli, P. Abirami, P. Sivagami, S. Sundarsingh, L. Karthik, Sayan Ghosh
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引用次数: 0

摘要

. 这项工作涉及风力发电方法的建模和修改,使其成为太阳风复合模式,并对所提出的方法进行分析和模拟。对建议的风力机进行建模,并考虑了转子直径、风速、俯仰角等参数。然后根据太阳辐照度和温度等一般参数对光伏组件进行建模。对太阳能光伏并网系统和独立系统进行了系统仿真。利用荷马网格软件对混合系统进行了仿真,并对仿真结果进行了观察。该混合系统的输出功率为1.5kw或1500w,由500kw的风力涡轮机和6块165w的光伏太阳能系统组成,每块太阳能电池板产生1kw或1000w的总峰值输出。自动控制器和转换器与155w的电池一起用于存储。结论指出,负荷吸收太阳能和风能方案的电力。然而,在一些驱动条件下,如太阳辐射和风速的变化,供电存在波动
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Analysis of Solar and Windmill Using Real Time Simulation Tool
. This work is concerned with modelling and modification of a wind power production method into a solar-wind composite mode along with analysis and simulation of the proposed method. The suggested Wind turbine is modelled, and parameters such as rotor diameter, wind speed, pitch angle, etc are taken into count. The PV module is then modeled based on general parameters such as solar irradiation and temperature, etc. A PVsyst simulation is performed for the solar PV grid and stand alone system. Further homer grid software is used to perform simulation on the hybrid system and the results were observed. The hybrid system has an output 1.5kw or 1500w which consists of wind turbines (500kw) and PV solar system of 6 panels of 165w each producing the total peak output of 1kw or 1000w. Autocontollers and converters are used along with a battery of 155w for storage. Conclusions point that the load absorbs power from both solar and wind schemes. However, there is the fluctuation of power supply in some driving conditions, such as modification of solar radiation and wind velocity
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