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UNDERSTANDING ECOLOGICAL EFFICIENCY AND ROBUSTNESS FOR NETWORK DESIGN USING THERMODYNAMIC POWER CYCLES

机译:利用热力循环对网络设计的生态效率和鲁棒性的理解

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Ecology has acted as a source for sound design principles and studies of ecosystems have examined how ecological principles can enhance sustainable human network design. Engineered systems are often designed for maximum performance, but in many cases, robustness is lost due to unwanted variations in inputs or efficiency. Taguchi's signal to noise ratio and other quality engineering principles are well known fundamentals in the field of robust design. In this paper, we will introduce flow-based metrics from ecological network analysis (ENA) for robustness, efficiency, and redundancy. Ecosystem robustness is related to the balance between flow path diversity and system delivery efficiency. Systems with diverse flows are more resilient to a disturbance since there are redundant pathways, but are inefficient because they contain many flow paths with the same endpoints. Efficient systems are better able to transfer material and energy, but this is at the cost of fewer pathways so the system is brittle. Thus to survive a disturbance, an ecosystem system balances redundancy with efficiency. Thermodynamic power cycles are used to understand the relationship between energy efficiency, measured using first law efficiency, and ecological robustness and an ecological balance of efficiency to redundancy (as measured by ascendency vs development capacity). The result highlights the importance of understanding differences in the meaning of efficiency between two fields, and that from an engineering standpoint robustness does not have to be sacrificed to obtain energy efficiency.
机译:生态学已成为合理设计原则的来源,对生态系统的研究已经研究了生态学原理如何增强可持续的人类网络设计。工程系统通常是为获得最佳性能而设计的,但是在许多情况下,由于不希望有的输入或效率变化,会失去鲁棒性。田口的信噪比和其他质量工程原理是坚固设计领域中众所周知的基础。在本文中,我们将从生态网络分析(ENA)中引入基于流的度量,以实现鲁棒性,效率和冗余性。生态系统的健壮性与流径多样性和系统交付效率之间的平衡有关。由于存在冗余路径,因此具有多种流量的系统对干扰的抵御能力更大,但由于它们包含许多具有相同端点的流路径,因此效率较低。高效的系统能够更好地传输材料和能量,但这是以减少通道的代价为代价的,因此系统很脆弱。因此,为了在干扰中幸存下来,生态系统会在冗余与效率之间取得平衡。热动力循环用于理解使用第一定律效率测得的能源效率与生态稳健性以及效率与冗余的生态平衡之间的关系(通过上升与发展能力来衡量)。结果凸显了理解两个领域之间效率含义上差异的重要性,并且从工程角度来看,不必为了获得能源效率而牺牲鲁棒性。

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