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[Social] Allostasis: Or, How I Learned To Stop Worrying and Love The Noise
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本文提出一种基于生物生理学启发的信号传递器计算模型,模拟社会allostatic调节机制,在动态环境中提高个体适应性,与纯反应性稳态模型相比,显示出更高的生存能力。

arXiv:2508.12791v1 Announce Type: new Abstract: The notion of homeostasis typically conceptualises biological and artificial systems as maintaining stability by resisting deviations caused by environmental and social perturbations. In contrast, (social) allostasis proposes that these systems can proactively leverage these very perturbations to reconfigure their regulatory parameters in anticipation of environmental demands, aligning with von Foerster's order through noise'' principle. This paper formulates a computational model of allostatic and social allostatic regulation that employs biophysiologically inspired signal transducers, analogous to hormones like cortisol and oxytocin, to encode information from both the environment and social interactions, which mediate this dynamic reconfiguration. The models are tested in a small society ofanimats'' across several dynamic environments, using an agent-based model. The results show that allostatic and social allostatic regulation enable agents to leverage environmental and social ``noise'' for adaptive reconfiguration, leading to improved viability compared to purely reactive homeostatic agents. This work offers a novel computational perspective on the principles of social allostasis and their potential for designing more robust, bio-inspired, adaptive systems

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社会allostatic调节 计算模型 生物灵感 适应性 动态环境
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