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Modeling complexity in engineered infrastructure system: Water distribution network as an example

机译:建模复杂性在工程基础设施系统中:水分配网络作为示例

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摘要

The complex topology and adaptive behavior of infrastructure systems are driven by both self-organization of the demand and rigid engineering solutions. Therefore, engineering complex systems requires a method balancing holism and reductionism. To model the growth of water distribution networks, a complex network model was developed following the combination of local optimization rules and engineering considerations. The demand node generation is dynamic and follows the scaling law of urban growth. The proposed model can generate a water distribution network (WDN) similar to reported real-world WDNs on some structural properties. Comparison with different modeling approaches indicates that a realistic demand node distribution and co-evolvement of demand node and network are important for the simulation of real complex networks. The simulation results indicate that the efficiency of water distribution networks is exponentially affected by the urban growth pattern. On the contrary, the improvement of efficiency by engineering optimization is limited and relatively insignificant. The redundancy and robustness, on another aspect, can be significantly improved through engineering methods. Published by AIP Publishing.
机译:基础设施系统的复杂拓扑和自适应行为是由需求和刚性工程解决方案的自我组织的驱动。因此,工程复杂系统需要一种平衡全美和还原性的方法。为了模拟分配网络的生长,遵循局部优化规则和工程考虑的组合开发了复杂的网络模型。需求节点生成是动态的,遵循城市增长的扩展法。所提出的模型可以产生类似于在某些结构性属性上报告的现实WDN的水分配网络(WDN)。与不同建模方法的比较表明,需求节点和网络的实际需求节点分布和共同演变对于实际复杂网络的仿真很重要。仿真结果表明,水分配网络的效率受城市增长模式的指数影响。相反,通过工程优化提高效率是有限的,相对微不足道。另一方面,通过工程方法可以显着改善冗余和鲁棒性。通过AIP发布发布。

著录项

  • 来源
    《Chaos》 |2017年第2期|共9页
  • 作者

    Zeng Fang; Li Xiang; Li Ke;

  • 作者单位

    Univ Georgia Fac Engn Athens GA 30605 USA;

    Univ Georgia Dept Comp Sci Athens GA 30605 USA;

    Univ Georgia Fac Engn Athens GA 30605 USA;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 自然科学总论;
  • 关键词

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