首页> 外文会议>International Conference on Architecture of Computing Systems(ARCS 2005); 20050314-17; Innsbruck(AT) >The Bio-Chemical Information Processing Metaphor as a Programming Paradigm for Organic Computing
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The Bio-Chemical Information Processing Metaphor as a Programming Paradigm for Organic Computing

机译:生物化学信息处理隐喻作为有机计算的编程范例

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All known life forms process information on a molecular level. This kind of chemical information processing is known to be robust, self-organizing, adaptive, decentralized, asynchronous, fault-tolerant, and evolvable. This paper discusses several aspects of how the metaphor of chemistry can be employed to build technical information processing systems. In these systems, computation emerges out of an orchestrated interplay of many decentralized relatively simple components called molecules. Chemical programming encompassed then the definition of molecules, reaction rules, and the topology and dynamics of the reaction vessel. Through the nature of emergence, chemical computation is difficult to predict from the underlying microscopic interaction rules. Therfore, one central challenge, namely, how to program emergent chemical processes, is discussed in more detail.
机译:所有已知生命形式都在分子水平上处理信息。已知这种化学信息处理功能强大,具有自组织性,自适应性,分散性,异步性,容错性和可演化性。本文讨论了如何利用化学隐喻来构建技术信息处理系统的几个方面。在这些系统中,计算是从许多分散的相对简单的称为分子的组件的相互配合中产生的。然后,化学程序设计包括分子的定义,反应规则,反应容器的拓扑和动力学。通过出现的性质,很难从潜在的微观相互作用规则中预测化学计算。因此,将更详细地讨论一个主要挑战,即如何对紧急化学过程进行编程。

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