自组织和阶段过渡在驱动的细胞自动机中
1Retired Electromagnetic Sciences, Engineering Experiment Station (now the Georgia Tech Research Institute). rainwater.hank@gmail.com.
Artificial life
|May 23, 2024
概括
这项研究修改了生命游戏 (GoL) 细胞自动机,通过永久激活稳定模式来创建有序结构. 这种人工化学方法模仿了自然的自我组织,导致可预测的结构形成和对前生物化学的洞察.
科学领域:
- 人工化学的人工化学
- 复杂的系统复杂的系统.
- 蜂自动机是一个自动机.
背景情况:
- 生命游戏 (GoL) 是一个具有复杂突发行为的细胞自动机.
- 了解人工系统中的自我组织可以提供对自然过程的见解.
研究的目的:
- 在状态转换期间修改GoL以注入订单.
- 调查修改后的目标目标的现象学和动态.
- 探索GoL作为人工化学和自我组织的模型.
主要方法:
- 修改了 GoL 状态过渡算法.
- 永久激活选择的稳定结构 (静态生命).
- 分析新兴结构和阶段过渡.
主要成果:
- 通过永久种子和随机活跃站点的相互作用,创建新的结构.
- 经过修改的GoL表现出具有选择性自组装的相位过渡.
- 在几何上相同的结构从相同的种子中出现,导致静态密度平衡.
结论:
- 经过修改的GoL展示了一种能够有序形成结构的人工化学形式.
- 这个模型为自然的自我组织提供了一个类比,从地球化学到益生菌化学.
- 永久活跃的种子可以指导细胞自动机中的新兴复杂性和自我组装.
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