Looking for Complexity at Phase Boundaries in Continuous Cellular Automata

Vassilis Papadopoulos, Guilhem Doat, Arthur Renard, Clément Hongler
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Abstract

One key challenge in Artificial Life is designing systems that display an emergence of complex behaviors. Many such systems depend on a high-dimensional parameter space, only a small subset of which displays interesting dynamics. Focusing on the case of continuous systems, we introduce the 'Phase Transition Finder'(PTF) algorithm, which can be used to efficiently generate parameters lying at the border between two phases. We argue that such points are more likely to display complex behaviors, and confirm this by applying PTF to Lenia showing it can increase the frequency of interesting behaviors more than two-fold, while remaining efficient enough for large-scale searches.
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寻找连续细胞自动机相界的复杂性
人工生命面临的一个关键挑战是设计出能显示复杂行为的系统。许多此类系统依赖于高维参数空间,其中只有一小部分能显示出有趣的动态。我们以连续系统为例,介绍了 "相位转换查找"(PTF)算法,该算法可用于在两个阶段的边界有效生成参数。我们认为,这些点更有可能显示复杂的行为,并通过将 PTF 应用于 Leniash 来证实这一点,结果表明它可以将有趣行为的频率提高两倍以上,同时保持足够的效率用于大规模搜索。
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