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Building Virtual Ecosystems from Artificial Chemistry

机译:从人工化学构建虚拟生态系统

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This paper adopts an interdisciplinary view of the significant elements of ecosystems and the methods by which these might be simulated to explore theoretical issues of relevance to Artificial Life and Ecology. Artificial Life has largely been concerned with evolutionary ecosystems of agents in trivial environments. Ecology commonly produces models of specific habitats and organism populations unsuited to general exploration of theoretical issues. We propose that limitations of the simulations in these disciplines can be overcome by simulating ecosystems from the level of artificial chemistry. We demonstrate the approach's feasibility by describing several virtual organisms represented at this level. The organisms automatically adopt trophic levels, generate energy from chemical bonds and transform material elements in the process. Virtual organisms may interact with one another and their abiotic environment using the same chemistry. Biosynthesis and decay may also be simulated through this mechanism.
机译:本文对生态系统的重要要素及其模拟方法采取了跨学科的观点,以探索与人工生命和生态相关的理论问题。人造生命在很大程度上与琐碎环境中生物的进化生态系统有关。生态学通常会产生特定生境和生物种群的模型,不适合对理论问题进行一般性探索。我们建议可以通过从人工化学的角度模拟生态系统来克服这些学科中模拟的局限性。我们通过描述此级别代表的几种虚拟生物来证明该方法的可行性。生物体自动采用营养水平,从化学键中产生能量并在此过程中转换物质元素。虚拟生物可以使用相同的化学物质彼此相互作用,并与其非生物环境相互作用。生物合成和衰变也可以通过这种机制进行模拟。

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