基于MATLAB/SIMULINK的单机风电-光伏混合发电系统建模

Md. Wazedur Rahman, K. Velmurugan, Md. Sultan Mahmud, Abdullah Al Mamun, P. Ravindran
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引用次数: 4

摘要

随着矿产资源的迅速恶化,化石燃料的消耗率迅速增加。相关的污染问题引起了研究人员对基于实验和仿真的不同可再生能源模型的关注。然而,混合可再生能源比单一可再生能源更高效、更可靠、更经济。对于难以实现典型电气化的非约束地区,自我可持续的光伏-风能混合系统提供了可行的解决方案。该混合能源模型考虑了风能转换系统(WECS)和太阳能光伏(PV)系统。本课题是在MATLAB/Simulink软件上考虑不同的环境条件,针对独立的光伏-风力混合发电系统进行开发。WECS和PV系统的设计都是基于MATLAB/Simulink中开发的数学表达式。风力涡轮机被称为WECS的心脏,由一个永磁同步发电机(PMSG)和一个为负载提供直流电源的整流器组成。从光伏系统获得的非调节直流功率输出,由集成了最大功率点跟踪(MPPT)的升压转换器进一步调节。WECS和太阳能光伏子系统将能量传递到同一直流母线,其中总能量用于公共直流负载。所提出的独特性能分析将有助于研究人员进一步探索光伏-风力混合发电系统的改进。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Modeling of a stand-alone Wind-PV Hybrid Generation System Using (MATLAB/SIMULINK)
The consumption rate of fossil fuels increases promptly with the rapid deterioration of mineral resources. The associated pollution problem has led the researcher’s attention to the development of experimental and simulation-based different renewable energy models. However, hybrid renewable energy sources are more efficient, reliable, and cost-effective than single renewable energy sources. For unbound localities where typical electrifications are difficult to reach, a self-sustainable PV-wind hybrid system imparts a viable solution. Wind energy conversion systems (WECS) and solar photovoltaic (PV) systems are considered for this proposed hybridization of the energy source model. This project has been developed for a standalone PV-wind hybrid generation system by considering different environmental conditions on MATLAB/Simulink software. The design of both WECS and PV systems is based on mathematical expressions developed in MATLAB/Simulink. The wind turbine so called the heart of WECS consist of a permanent magnet synchronous generator (PMSG) and a rectifier for providing DC power to the load. The unregulated DC power output procured from a PV system, further regulated by a boost converter which is integrated with a maximum power point tracking (MPPT). WECS and solar PV subsystems are imparted energy to the same DC bus where the total energy is utilized for the common DC load. The presented unique performance analysis will help the researchers to explore the PV-wind hybrid generation system for further improvements.
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