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Optimal design of an autonomous solar-wind-pumped storage power supply system

机译:自主式太阳风泵储能电源系统的优化设计

摘要

Renewable energy, particularly solar and wind power integrated with microgrid technology, offers important opportunities for remote communities to provide power supply, improve local energy security and living conditions. The combination of solar, wind power and energy storage make possible the sustainable generation of energy for remote communities, and keep energy costs lower than diesel generation as well. The purpose of this study is to optimize the system design of a proposed hybrid solar-wind-pumped storage system in standalone mode for an isolated microgrid of a scale of a few hundred kW. The initial design process of the system's major components is presented, and then optimized based on a techno-economic evaluation. The optimal system configuration under zero loss of power supply probability (LPSP) is further examined. In addition, the system performance of hybrid solar-wind, solar-alone and wind-alone systems with pumped storage under LPSP from 0% to 5% is investigated and compared. Results demonstrate that addition of wind turbine can result in a lower cost of energy (COE) and help reduce the size of energy storage. Sensitivity analysis on several key parameters is also performed to examine their effects on system COE.
机译:可再生能源,特别是与微电网技术集成的太阳能和风能,为偏远社区提供了重要的机会,可以提供电力,改善当地的能源安全和生活条件。太阳能,风能和储能的结合使偏远社区能够可持续地生产能源,并且使能源成本也低于柴油发电。这项研究的目的是针对数百千瓦的隔离微电网,以独立模式优化拟议的混合太阳风泵存储系统的系统设计。介绍了系统主要组件的初始设计过程,然后根据技术经济评估进行了优化。进一步研究了在零电源丢失概率(LPSP)下的最佳系统配置。此外,还研究并比较了在LPSP下从0%到5%抽水蓄能的混合太阳能-风,单太阳能和单风混合系统的系统性能。结果表明,增加风力涡轮机可以降低能源成本(COE),并有助于减小能量存储的大小。还对几个关键参数进行了敏感性分析,以检查它们对系统COE的影响。

著录项

  • 作者

    Ma T; Yang H; Lu L; Peng J;

  • 作者单位
  • 年度 2015
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类

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