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Modeling and simulation of grid connected photovoltaic system using Matlab / Simulink

机译:基于Matlab / Simulink的光伏并网光伏系统的建模与仿真。

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摘要

Photovoltaic System is a huge topic that can be researched and studied on such as the arrangement of PV array is one of the issues that can be studied. Besides that, the control techniques can as well be delved into. Another important area that makes concern to the PV world would be the maximum power point tracker (MPPT) for PV to maximize the sun energy, and so many more can be said in these advanced millennia. Yet in this research work, the scope has to be scaled down in appreciation to the given time. This research project would mainly concern on the different PV technologies (amorphous silicon, polycrystalline) and their effect to the system in terms of energy output. Besides that, this project work would be designed nearly to the BIPV-PTM projects that have been implemented in Malaysia in order to verify the energy output results from the modeling and simulation activities. The project works will emphasis on Malaysia’s temperature and solar radiation. On the other hand, having so much respect to the given time, the grid connected PV system modeling may not have protection system to be included in the design and only the best inverter model would be chosen for the simulation purpose. Overall findings indicate that the modeling using MATLAB / SIMULINK can be further used for investigation and make improvement in order to identify which best technologies to be implemented. The polycrystalline PV System yields higher energy output compared to the amorphous silicon technology is another finding thru this project.
机译:光伏系统是一个值得研究和研究的重大课题,例如光伏阵列的布置是需要研究的问题之一。除此之外,还可以研究控制技术。引起光伏世界关注的另一个重要领域是使太阳光能最大化的光伏最大功率点跟踪器(MPPT),在这些千年的发展中可以说有更多的领域。然而,在这项研究工作中,必须缩小范围以适应给定的时间。该研究项目将主要关注不同的光伏技术(非晶硅,多晶硅)及其在能量输出方面对系统的影响。除此之外,该项目工作将几乎针对马来西亚已实施的BIPV-PTM项目进行设计,以验证建模和仿真活动的能源输出结果。该项目的工作重点是马来西亚的温度和太阳辐射。另一方面,考虑到给定的时间,并网光伏系统建模可能没有保护系统包含在设计中,并且仅出于仿真目的选择了最佳逆变器模型。总体结果表明,使用MATLAB / SIMULINK进行的建模可以进一步用于调查和改进,从而确定要实施的最佳技术。与非晶硅技术相比,多晶硅光伏系统可产生更高的能量输出,这也是该项目的另一个发现。

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    Thanakodi Suresh;

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  • 年度 2009
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  • 原文格式 PDF
  • 正文语种 {"code":"en","name":"English","id":9}
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