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首页> 外文期刊>Energy Conversion & Management >Design optimization of multi-energy systems using mixed-integer linear programming: Which model complexity and level of detail is sufficient?
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Design optimization of multi-energy systems using mixed-integer linear programming: Which model complexity and level of detail is sufficient?

机译:使用混合整数线性编程设计优化多能量系统:哪种模型复杂性和细节水平就足够了?

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摘要

Designing sustainable, cross-sectoral energy supply systems is a challenging task. A widespread and proven planning approach is mathematical optimization and in particular mixed-integer linear programming (MILP). While numerous MILP models have been presented in literature, there is no convention which level of detail is necessary to obtain reliable energy system designs. In this paper, a systematic performance comparison of 24 MILP models for designing multi-energy systems is conducted. The models include different combinations of five widely used model features: Piece-wise linear investment curves, multiple component resolution, minimum partload limitations, part-load efficiencies, and start-up costs. The operational performances of the optimal system designs are compared by using a unit commitment optimization with high level of detail. In a district heating case study, the total annualized costs of the unit commitment optimizations differ substantially from 391 to 481 kEUR and the computation times of the design optimizations range from 10 s to more than 10 h. Models that consider part-load efficiencies lead to the lowest system costs but the highest computation times. In addition, simple design heuristics are identified which lead in combination with fast-solving linear models to energy systems with low total annualized costs (410 kEUR, 5% cost increase).
机译:设计可持续的跨部门能源供应系统是一个具有挑战性的任务。广泛和经过验证的规划方法是数学优化,特别是混合整数线性编程(MILP)。虽然在文献中呈现了众多MILP型号,但没有公约可以进行细节水平来获得可靠的能源系统设计。本文采用了用于设计多能量系统的24个MILP模型的系统性能比较。该模型包括五种广泛使用的模型特征的不同组合:分型线性投资曲线,多个组件分辨率,最小零件限制,部分负载效率以及启动成本。通过使用具有高水平的细节的单位承诺优化进行比较最佳系统设计的操作性能。在一个地区供暖案例研究中,单位承诺优化的总成本大幅不同于391至481 kur,设计优化的计算时间范围为10 s至10小时。考虑部分负载效率的模型导致最低系统成本,但计算时间最高。此外,识别简单的设计启发式机器,其与快速求解线性模型与总年化成本低的能量系统相结合(410 Keur,成本增加5%)。

著录项

  • 来源
    《Energy Conversion & Management》 |2021年第7期|114249.1-114249.17|共17页
  • 作者单位

    Rhein Westfal TH Aachen EON Energy Res Ctr Inst Energy Efficient Bldg & Indoor Climate Mathieustr 10 Aachen Germany;

    Rhein Westfal TH Aachen EON Energy Res Ctr Inst Energy Efficient Bldg & Indoor Climate Mathieustr 10 Aachen Germany;

    Rhein Westfal TH Aachen EON Energy Res Ctr Inst Energy Efficient Bldg & Indoor Climate Mathieustr 10 Aachen Germany;

    Rhein Westfal TH Aachen EON Energy Res Ctr Inst Energy Efficient Bldg & Indoor Climate Mathieustr 10 Aachen Germany;

  • 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

    Design optimization; Multi-energy system; MILP; Energy hub; Linear programming; Model complexity;

    机译:设计优化;多能量系统;MILP;能量枢纽;线性规划;模型复杂性;

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