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Optimizing Potential Information Transfer with Self-referential Memory

机译:使用自引用内存优化潜在的信息传递

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This paper investigates an information-theoretic design principle, intended to support an evolution of a memory structure fitting a specific selection pressure: potential information transfer through the structure. The proposed criteria measure how much does associativity in memory add to the information transfer in terms of precision, recall and effectiveness. Maximization of the latter results in holographic memory structures that can be interpreted in self-referential terms. The study introduces an analogy between self-replication and memory retrieval, with DNA as a partially-associative memory containing relevant information. DNA decoding by a complicated protein machinery ("cues" or "keys") may corresponds to an associative recall: i.e., a replicated offspring is an associatively-recalled prototype. The proposed information-theoretic criteria intend to formalize the notion of information transfer involved in self-replication, and enable bio-inspired design of more effective memory structures.
机译:本文研究了一种信息理论设计原理,旨在支持适应特定选择压力的内存结构的演变:潜在的信息通过结构的传递。拟议的标准衡量了存储器的关联性在准确性,召回性和有效性方面为信息传递增加了多少。后者的最大化导致可以用自指术语解释的全息存储结构。这项研究引入了自我复制和记忆检索之间的类比,其中DNA是包含相关信息的部分联想记忆。通过复杂的蛋白质机制(“提示”或“键”)进行的DNA解码可能对应于联想记忆:即,复制后代是联想记忆的原型。拟议中的信息理论标准旨在规范化涉及自我复制的信息转移的概念,并使生物启发性设计更有效的记忆结构。

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