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首页> 外文期刊>Philosophical Transactions of the Royal Society of London, Series B. Biological Sciences >Energy and time determine scaling in biological and computer designs
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Energy and time determine scaling in biological and computer designs

机译:精力和时间决定着生物和计算机设计的规模

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摘要

Metabolic rate in animals and power consumption in computers are analogous quantities that scale similarly with size. We analyse vascular systems of mammals and on-chip networks of microprocessors, where natural selection and human engineering, respectively, have produced systems that minimize both energy dissipation and delivery times. Using a simple network model that simultaneously minimizes energy and time, our analysis explains empirically observed trends in the scaling of metabolic rate in mammals and power consumption and performance in microprocessors across several orders of magnitude in size. Just as the evolutionary transitions from unicellular to multicellular animals in biology are associated with shifts in metabolic scaling, our model suggests that the scaling of power and performance will change as computer designs transition to decentralized multi-core and distributed cyber-physical systems. More generally, a single energy-time minimization principle may govern the design of many complex systems that process energy, materials and information.
机译:动物中的代谢率和计算机中的功耗是类似的大小,它们的大小相似。我们分析哺乳动物的血管系统和微处理器的片上网络,在这些系统中,自然选择和人体工程学分别产生了使能量消耗和传递时间最小化的系统。我们使用一个简单的网络模型同时最小化能量和时间,我们的分析解释了经验观察到的哺乳动物新陈代谢率的缩放趋势以及数个数量级大小的微处理器的功耗和性能。正如生物学中从单细胞动物到多细胞动物的进化转变与代谢缩放的变化相关,我们的模型表明,随着计算机设计向分散的多核和分布式网络物理系统的转变,功率和性能的缩放也会改变。更一般地,单一的能量时间最小化原则可以支配许多处理能量,材料和信息的复杂系统的设计。

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