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Adaptation to criticality through organizational invariance in embodied agents

机译:通过体现主体的组织不变性适应关键性

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摘要

Many biological and cognitive systems do not operate deep within one or other regime of activity. Instead, they are poised at critical points located at phase transitions in their parameter space. The pervasiveness of criticality suggests that there may be general principles inducing this behaviour, yet there is no well-founded theory for understanding how criticality is generated at a wide span of levels and contexts. In order to explore how criticality might emerge from general adaptive mechanisms, we propose a simple learning rule that maintains an internal organizational structure from a specific family of systems at criticality. We implement the mechanism in artificial embodied agents controlled by a neural network maintaining a correlation structure randomly sampled from an Ising model at critical temperature. Agents are evaluated in two classical reinforcement learning scenarios: the Mountain Car and the Acrobot double pendulum. In both cases the neural controller appears to reach a point of criticality, which coincides with a transition point between two regimes of the agent’s behaviour. These results suggest that adaptation to criticality could be used as a general adaptive mechanism in some circumstances, providing an alternative explanation for the pervasive presence of criticality in biological and cognitive systems.
机译:许多生物和认知系统无法在一种或其他活动机制内深入运作。相反,它们被放置在参数空间中相变处的关键点上。批判性的普遍性表明,可能有一般的原则来诱发这种行为,但是,尚无一个有充分根据的理论来理解在广泛的水平和背景下如何产生批判性。为了探索关键性如何从通用适应性机制中出现,我们提出了一个简单的学习规则,该规则维护处于关键状态的特定系统族的内部组织结构。我们在神经网络控制的人工体现代理中实现该机制,该代理在临界温度下保持从Ising模型随机采样的相关结构。在两种经典的强化学习场景中对特工进行评估:Mountain Car和Acrobot双摆。在这两种情况下,神经控制器似乎都达到了临界点,这与代理行为的两个状态之间的过渡点一致。这些结果表明,对关键性的适应可以在某些情况下用作一般的适应性机制,为生物学和认知系统中普遍存在的关键性提供了另一种解释。

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