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Developmental Computing (Extended Abstract)

机译:发展计算(扩展摘要)

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Since their inception over forty years ago, L-systems have proven to be a useful conceptual and programming framework for modeling the development of plants at different levels of abstraction and different spatial scales. Formally, L-systems offer a means of defining cell complexes with changing topology and geometry. Associated with these complexes are self-configuring systems of equations that represent functional aspects of the models. The close coupling of topology, geometry and computation constitutes a computing paradigm inspired by nature, termed developmental computing. We analyze distinctive features of this paradigm within and outside the realm of biological models.
机译:自从四十年前开始以来,L-Systems已被证明是一个有用的概念和编程框架,用于在不同水平和不同的空间尺度下建模植物的发展。正式地,L-Systems提供了一种用改变拓扑和几何形状定义单元复合物的方法。与这些复合部分相关联是自配置的等式系统,其代表模型的功能方面。拓扑,几何和计算的密切耦合构成了由自然的计算的计算范例,称为发展计算。我们分析生物模型领域内外这个范式的独特特征。

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