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COMPUTATIONAL INTELLIGENCE FOR CARBON-CENTRIC COMPUTING

机译:碳心计算的计算智能

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摘要

The focus of this paper is twofold: firstly we make a case for the use of Computational Intelligence (CI) techniques in the modelling and/or prediction of global weather, CO_2 emissions, climate change and similar endeavours. CI exploits processes found in Nature, albeit by way of software simulations on digital computers (i.e. in silico), and excel in particular at pattern recognition and/or classification. Moreover, they are characterized as being non-algorithmic, bottom-up, data-driven, and learn-by-example. The second focus of this paper is to propose the use of carbon-rather than silicon-based computing, specifically in the form of DNA (or molecular) computing. Notwithstanding the unsolved difficulties with the latter (especially concerning Input/Output), its inherent massive parallelism has the potential to yield significant performance advantages. Finally, to come full circle, it could well eventuate that the inherent parallelism of DNA Computing could be brought to bear in the modelling/prediction endeavours mentioned previously.
机译:本文的重点是双重的:首先,我们为在全球天气,CO_2排放,气候变化和类似努力的建模和/或预测中使用计算智能(CI)技术做一个案例。 CI通过在数字计算机上(例如计算机上)进行软件仿真来利用自然界中发现的过程,并且尤其擅长模式识别和/或分类。此外,它们的特征是非算法,自下而上,数据驱动和示例学习。本文的第二个重点是提出使用碳而不是基于硅的计算,特别是以DNA(或分子)计算的形式。尽管后者有未解决的困难(特别是在输入/输出方面),但其固有的大规模并行性有可能产生显着的性能优势。最后,要全面发展,很可能最终可以将DNA计算的固有并行性带入前面提到的建模/预测工作中。

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  • 来源
    《Australian journal of information systems》 |2010年第2期|p.167-179|共13页
  • 作者

    John Fulcher;

  • 作者单位

    School of Computer Science and Software Engineering, University of Wollongong Wollongong 2522, Australia;

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  • 原文格式 PDF
  • 正文语种 eng
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