Current status of research on optimum sizing of stand-alone hybrid solar–wind power generation systems

Current status of research on optimum sizing of stand-alone hybrid solar–wind power generation systems
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DOI:
10.1016/j.apenergy.2009.08.012
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发表时间:
2010-02
期刊:
影响因子:
11.2
通讯作者:
Wei Zhou;C. Lou;Z. Li;Lin Lu;Hongxing Yang
Wei Zhou;C. Lou;Z. Li;Lin Lu;Hongxing Yang
中科院分区:
工程技术1区
文献类型:
--
作者:
Wei Zhou;C. Lou;Z. Li;Lin Lu;Hongxing Yang

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太阳能和风能系统无处不在,免费可用,对环境友好,由于其可获得性和对当地发电的拓扑优势,被认为是很有前途的发电来源。太阳能-风能混合系统使用两种可再生能源,可以提高系统效率和电力可靠性,并减少独立应用的储能需求。由于可再生能源技术的进步和石油产品价格的大幅上涨,太阳能-风能混合系统在偏远地区的发电应用中越来越受欢迎。本文综述了独立蓄电池太阳能-风能混合发电系统的仿真、优化和控制技术的研究现状。研究发现,仍需继续在这一领域进行研究和开发工作,以改进系统的性能,建立准确预测其输出的技术,并将其与其他可再生能源或传统能源可靠地整合在一起。
Solar and wind energy systems are omnipresent, freely available, environmental friendly, and they are considered as promising power generating sources due to their availability and topological advantages for local power generations. Hybrid solar–wind energy systems, uses two renewable energy sources, allow improving the system efficiency and power reliability and reduce the energy storage requirements for stand-alone applications. The hybrid solar–wind systems are becoming popular in remote area power generation applications due to advancements in renewable energy technologies and substantial rise in prices of petroleum products. This paper is to review the current state of the simulation, optimization and control technologies for the stand-alone hybrid solar–wind energy systems with battery storage. It is found that continued research and development effort in this area is still needed for improving the systems’ performance, establishing techniques for accurately predicting their output and reliably integrating them with other renewable or conventional power generation sources.