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首页> 外文期刊>Applied Energy >Surrogate-assisted robust design optimization and global sensitivity analysis of a directly coupled photovoltaic-electrolyzer system under techno-economic uncertainty
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Surrogate-assisted robust design optimization and global sensitivity analysis of a directly coupled photovoltaic-electrolyzer system under techno-economic uncertainty

机译:技术经济不确定性下直接耦合光伏电解系统的替代辅助鲁棒设计优化和全局灵敏度分析

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摘要

To match intermittent solar energy supply with energy demand, power-to-hydrogen is a viable solution. In this framework, designing a directly coupled photovoltaic-electrolyzer system assuming deterministic parameters (i.e. perfectly known and fixed parameters) is widely studied. However, considering deterministic model parameters in optimization disregards the inherent uncertainty of the system performance during real-life operation (e.g. due to unexpected costs or ineffective maintenance), leading to a fragile, suboptimal direct coupling of the photovoltaic array with the electrolyzer stack. To avoid a suboptimal coupling, we performed a design optimization under parameter uncertainties (i.e. robust design optimization). This paper provides the deterministic designs, robust designs and a global sensitivity analysis on the hydrogen production and levelized cost of hydrogen. The technical robust design provides a 43% reduction in hydrogen production standard deviation compared to the deterministic design, while the robust, cost-efficient design achieves a mean levelized cost of hydrogen of 6.4(sic)/kg and standard deviation of 0.74(sic)/kg. The discount rate and capital expenditure parameters dominate the standard deviation by 52% and 39% respectively. Therefore, bulk manufacturing of these technologies and more demonstration projects are the main actions to improve the robustness. Future works will focus on including accurate probability distributions, a demand load, the grid and batteries to the system.
机译:为了使间歇性的太阳能供应与能源需求相匹配,氢能发电是一种可行的解决方案。在该框架中,广泛研究了设计具有确定性参数(即,完全已知和固定的参数)的直接耦合的光伏-电解器系统。然而,在优化中考虑确定性模型参数会忽略现实运行中系统性能的固有不确定性(例如,由于意外成本或无效维护),导致光伏阵列与电解器堆之间的脆弱,次优直接耦合。为避免次优耦合,我们在参数不确定性下进行了设计优化(即稳健的设计优化)。本文提供了确定性的设计,可靠的设计以及对氢气生产和氢气平准化成本的全局敏感性分析。与确定性设计相比,技术稳健的设计使制氢标准偏差降低了43%,而稳健,经济高效的设计实现了平均水平的氢气平均成本为6.4(sic)/ kg,标准偏差为0.74(sic) /公斤。折现率和资本支出参数分别占标准偏差的52%和39%。因此,这些技术的批量制造和更多的示范项目是提高鲁棒性的主要措施。未来的工作将集中在包括准确的概率分布,需求负载,系统的电网和电池。

著录项

  • 来源
    《Applied Energy》 |2019年第15期|310-320|共11页
  • 作者单位

    Vrije Univ Brussel, Fluid & Thermal Dynam FLOW, Pl Laan 2, B-1050 Brussels, Belgium|Vrije Univ Brussel, Combust & Robust Optimizat Grp BURN, B-1050 Brussels, Belgium|Univ Litre Bruxelles, B-1050 Brussels, Belgium|Univ Mons UMONS, Thermal Engn & Combust Unit, Pl Parc 20, B-7000 Mons, Belgium;

    Univ Mons UMONS, Thermal Engn & Combust Unit, Pl Parc 20, B-7000 Mons, Belgium;

    Vrije Univ Brussel, Fluid & Thermal Dynam FLOW, Pl Laan 2, B-1050 Brussels, Belgium|Vrije Univ Brussel, Combust & Robust Optimizat Grp BURN, B-1050 Brussels, Belgium|Univ Litre Bruxelles, B-1050 Brussels, Belgium;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Photovoltaic-electrolyzer system; Levelized cost of hydrogen; Robust design optimization; Uncertainty quantification; Global sensitivity analysis;

    机译:光伏电解系统;氢气的平均成本;稳健的设计优化;不确定度量化;全局灵敏度分析;

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