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A natural framework for arbitrary multi-scale computer science and systems biology efficient computational modeling

机译:任意多尺度计算机科学和系统生物学高效计算建模的自然框架

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摘要

The aim of the present paper is to provide the first concise overview of a natural framework for arbitrary multi-scale computer science and systems biology computational modeling. To grasp a more reliable representation of reality and to get more effective modeling techniques, researchers and scientists need two intelligently articulated hands: both stochastic and combinatorial approaches synergically articulated by natural coupling. After a brief introduction about traditional modeling vs. fresh QFT approach, we go to the root of the problem directly. We present key points solution to arbitrary multi-scale modeling problems. The first attempt to identify basic principles to get stronger modeling solution for scientific application has been developing at Politecnico di Milano University since the 1990s. The fundamental principles on computational information conservation theory (CICT), for arbitrary multi-scale system modeling from basic generator and relation through discrete paths denser and denser to one another, towards a never ending 'blending quantum continuum,' are recalled. A computational example is presented and discussed. This paper is a relevant contribute towards arbitrary multi-scale computer science and systems biology modeling, to show how computational information conservation approach can offer stronger and more effective system modeling algorithms for more reliable simulation.
机译:本文的目的是为任意多尺度计算机科学和系统生物学计算建模提供自然框架的第一个简要概述。为了掌握现实情况的更可靠表示并获得更有效的建模技术,研究人员和科学家需要两只智能的手:通过自然耦合协同表达的随机方法和组合方法。在简要介绍了传统建模与新的QFT方法之后,我们直接探究了问题的根源。我们提出了针对任意多尺度建模问题的关键点解决方案。自1990年代以来,米兰理工大学就开始了寻找基本原理以获取更强大的科学应用建模解决方案的尝试。回顾了关于计算信息守恒理论(CICT)的基本原理,即从基本生成器和关系到越来越紧密的离散路径到永无止境的“混合量子连续体”的任意多尺度系统建模。给出并讨论了一个计算示例。本文是对任意多尺度计算机科学和系统生物学建模的重要贡献,以展示计算信息保存方法如何为更可靠的仿真提供更强大,更有效的系统建模算法。

著录项

  • 作者

    Fiorini Rodolfo;

  • 作者单位
  • 年度 2015
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类

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