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Automated superstructure-based synthesis and optimization of distributed energy supply systems

机译:基于自动化上层建筑的分布式能源供应系统综合与优化

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摘要

A framework is presented for the automated superstructure generation and optimization of distributed energy supply systems (DESS). Based on a basic problem description (specifying load cases, available technologies, and topographic constraints), the presented framework first employs the P-graph approach for the generation of an initial superstructure containing exactly one unit of each feasible technology. DESS, however, require to account for multiple redundant conversion units, and thus a successive approach is employed to automatically expand the initial P-graph superstructure. In addition, topographic constraints are incorporated. The expanded superstructure is automatically converted into a mathematical model using a generic component-based modeling approach. Here, a robust MILP formulation is used to rigorously optimize the structure, sizing and operation of DESS. The employed MILP formulation accounts for time-varying load profiles, continuous equipment sizing, and part-load dependent operating efficiencies. In the present implementation, a GAMS model is generated that can be readily optimized. The methodology is applied to a real-world case study. It is shown that the framework conveniently and efficiently enables automated grassroots and retrofit synthesis of DESS identifying unexpected and complex designs.
机译:提出了用于自动上层建筑的生成和分布式能源供应系统(DESS)的优化的框架。基于基本的问题描述(指定荷载工况,可用技术和地形约束),提出的框架首先采用P图方法生成初始上层建筑,其中包含每种可行技术的一个单元。但是,DESS需要考虑多个冗余转换单元,因此采用了一种连续方法来自动扩展初始P图上层结构。另外,合并了地形约束。使用基于组件的通用建模方法,可将扩展的上部结构自动转换为数学模型。在这里,强大的MILP配方用于严格优化DESS的结构,尺寸和操作。采用的MILP配方考虑了随时间变化的负载曲线,连续的设备选型以及部分负载相关的运行效率。在本实施方式中,生成了可以容易地优化的GAMS模型。该方法应用于实际案例研究。结果表明,该框架方便有效地实现了DESS的自动化基层和改造综合,可识别出意想不到的复杂设计。

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