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Collective Learning and Optimal Consensus Decisions in Social Animal Groups

机译:社会动物群体的集体学习和最优共识决策

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Learning has been studied extensively in the context of isolated individuals. However, many organisms are social and consequently make decisions both individually and as part of a collective. Reaching consensus necessarily means that a single option is chosen by the group, even when there are dissenting opinions. This decision-making process decouples the otherwise direct relationship between animals' preferences and their experiences (the outcomes of decisions). Instead, because an individual's learned preferences influence what others experience, and therefore learn about, collective decisions couple the learning processes between social organisms. This introduces a new, and previously unexplored, dynamical relationship between preference, action, experience and learning. Here we model collective learning within animal groups that make consensus decisions. We reveal how learning as part of a collective results in behavior that is fundamentally different from that learned in isolation, allowing grouping organisms to spontaneously (and indirectly) detect correlations between group members' observations of environmental cues, adjust strategy as a function of changing group size (even if that group size is not known to the individual), and achieve a decision accuracy that is very close to that which is provably optimal, regardless of environmental contingencies. Because these properties make minimal cognitive demands on individuals, collective learning, and the capabilities it affords, may be widespread among group-living organisms. Our work emphasizes the importance and need for theoretical and experimental work that considers the mechanism and consequences of learning in a social context.
机译:在孤立的个体的背景下,学习得到了广泛的研究。但是,许多生物都是社会性的,因此,无论是个人决策还是集体决策,都是如此。达成共识必定意味着即使有不同意见,小组也只能选择一个选项。这个决策过程使动物的偏好与其经历(决策的结果)之间的直接关系脱钩。取而代之的是,由于个人的学习偏好会影响他人的经历,因此会有所了解,因此集体决策将社会有机体之间的学习过程耦合在一起。这在偏好,行动,经验和学习之间引入了一种新的,以前无法探索的动态关系。在这里,我们对做出共识决定的动物群体内的集体学习进行建模。我们揭示了作为集体学习一部分的学习如何导致行为方式与孤立学习的行为方式根本不同,从而使有机体能够自发地(间接地)检测小组成员对环境线索的观察之间的相关性,并根据变化的小组来调整策略(即使个人不知道该小组的规模),并且无论环境如何变化,其决策精度都非常接近可证明的最佳决策精度。由于这些特性对个人的认知要求极低,因此集体学习及其提供的功能可能会在集体生活的生物中广泛传播。我们的工作强调了理论和实验工作的重要性和必要性,这些工作考虑了在社会环境中学习的机制和后果。

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