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首页> 外文期刊>Advances in Artificial Intelligence >Selection for Reinforcement-Free Learning Ability as an Organizing Factor in the Evolution of Cognition
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Selection for Reinforcement-Free Learning Ability as an Organizing Factor in the Evolution of Cognition

机译:选择无强化学习能力作为认知进化中的组织因素

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This research explores the relation between environmental structure and neurocognitive structure. We hypothesize that selection pressure on abilities for efficient learning (especially in settings with limited or no reward information) translates into selection pressure on correspondence relations between neurocognitive and environmental structure, since such correspondence allows for simple changes in the environment to be handled with simple learning updates in neurocognitive structure. We present a model in which a simple form of reinforcement-free learning is evolved in neural networks using neuromodulation and analyze the effect this selection for learning ability has on the virtual species' neural organization. We find a higher degree of organization than in a control population evolved without learning ability and discuss the relation between the observed neural structure and the environmental structure. We discuss our findings in the context of the environmental complexity thesis, the Baldwin effect, and other interactions between adaptation processes.
机译:这项研究探讨了环境结构和神经认知结构之间的关系。我们假设有效学习能力的选择压力(特别是在奖励信息有限或没有奖励的情况下)转化为神经认知与环境结构之间的对应关系的选择压力,因为这种对应关系允许通过简单学习来处理环境的简单变化神经认知结构的更新。我们提出了一个模型,在该模型中,使用神经调节的神经网络演化了一种简单形式的无强化学习,并分析了这种选择学习能力对虚拟物种的神经组织的影响。我们发现比没有学习能力的对照人群更高的组织度,并讨论了观察到的神经结构与环境结构之间的关系。我们在环境复杂性理论,鲍德温效应以及适应过程之间的其他相互作用的背景下讨论我们的发现。

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