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Synthetic consciousness: the distributed adaptive control perspective

机译:综合意识:分布式自适应控制视角

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摘要

Understanding the nature of consciousness is one of the grand outstanding scientific challenges. The fundamental methodological problem is how phenomenal first person experience can be accounted for in a third person verifiable form, while the conceptual challenge is to both define its function and physical realization. The distributed adaptive control theory of consciousness (DACtoc) proposes answers to these three challenges. The methodological challenge is answered relative to the hard problem and DACtoc proposes that it can be addressed using a convergent synthetic methodology using the analysis of synthetic biologically grounded agents, or quale parsing. DACtoc hypothesizes that consciousness in both its primary and secondary forms serves the ability to deal with the hidden states of the world and emerged during the Cambrian period, affording stable multi-agent environments to emerge. The process of consciousness is an autonomous virtualization memory, which serializes and unifies the parallel and subconscious simulations of the hidden states of the world that are largely due to other agents and the self with the objective to extract norms. These norms are in turn projected as value onto the parallel simulation and control systems that are driving action. This functional hypothesis is mapped onto the brainstem, midbrain and the thalamo-cortical and cortico-cortical systems and analysed with respect to our understanding of deficits of consciousness. Subsequently, some of the implications and predictions of DACtoc are outlined, in particular, the prediction that normative bootstrapping of conscious agents is predicated on an intentionality prior. In the view advanced here, human consciousness constitutes the ultimate evolutionary transition by allowing agents to become autonomous with respect to their evolutionary priors leading to a post-biological Anthropocene.This article is part of the themed issue ‘The major synthetic evolutionary transitions’.
机译:理解意识的本质是巨大的科学挑战之一。基本的方法论问题是,如何以第三人称可验证的形式解释惊人的第一人称体验,而概念上的挑战是定义其功能和物理实现。分布式意识自适应控制理论(DACtoc)为这三个挑战提出了答案。相对于难题,方法学上的挑战得到了解决,DACtoc提出可以使用融合的合成方法论来解决它,方法是对合成的生物基础制剂进行分析或定性分析。 DACtoc假设,意识的主要形式和次要形式都具有处理世界隐性状态的能力,并在寒武纪期间出现,从而提供了稳定的多主体环境。意识过程是一个自主的虚拟化内存,它序列化并统一了世界上隐藏状态的并行和潜意识模拟,这主要归因于其他主体和自我,目的是提取规范。这些规范又作为值投影到驱动动作的并行仿真和控制系统上。这个功能性假设被映射到脑干,中脑以及丘脑皮质和皮质皮质系统,并就我们对意识缺陷的理解进行了分析。随后,概述了DACtoc的一些含义和预测,特别是关于有意识主体的规范自举是基于有意先验的预测。在这里提出的观点中,人类意识通过允许个体对其导致先生后人类世的进化先验变得自治而构成了最终的进化转变。本文是主题“主要的合成进化转变”的一部分。

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