Learning the Caesar and Vigenere Cipher by hierarchical evolutionary re-combination

A. Blair
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引用次数: 14

Abstract

We describe a new programming language called HERCL, designed for evolutionary computation with the specific aim of allowing new programs to be created by combining patches of code from different parts of other programs, at multiple scales. Large-scale patches are followed up by smaller-scale patches or mutations, recursively, to produce a global random search strategy known as hierarchical evolutionary re-combination. We demonstrate the proposed system on the task of learning to encode with the Caesar or Vigenere Cipher, and show how the evolution of one task may fruitfully be cross-pollinated with evolved solutions from other related tasks.
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通过等级进化重组学习凯撒和维吉内尔密码
我们描述了一种名为HERCL的新编程语言,它是为进化计算而设计的,其具体目标是允许通过在多个尺度上组合来自其他程序不同部分的代码补丁来创建新程序。大规模的斑块之后会有较小规模的斑块或突变,递归地产生一种称为分层进化重组的全局随机搜索策略。我们在学习使用Caesar或Vigenere密码进行编码的任务上演示了所提出的系统,并展示了一个任务的进化如何与来自其他相关任务的进化解决方案进行有效的交叉授粉。
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