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意识算力分布式模型:基于梦境-现实同一性的统一意识理论 Consciousness Computing Power Distributed Model: A Unified Consciousness Theory Based on Dream-Reality Identity

德猛 杨

Zenodo (CERN European Organization for Nuclear Research) June 5, 2026 DOI: 10.5281/zenodo.21709069 (opens in new tab) via OpenAlex

Summary

AI-generated from the abstract

This paper introduces the Consciousness Computing Power Distributed Model (CCPDM), which frames consciousness as a problem of computing power allocation to unify explanations of individual dreams, collective unconsciousness, and the real world. Drawing on the author's personal three-stage dream experiment and observations from The Crowd, the model posits a dual computing system in the brain: an instinctive brain with high computing power but low logic, and a prefrontal lobe with low computing power but high logic. It argues that dreams are single-node consciousness systems with limited computing power, collective unconsciousness is a temporary multi-node cluster with reduced overall intelligence, and the real world is a permanent distributed consensus system stabilized by 7 billion human brains.

Study at a glance

Characteristics Theoretical paper Peer reviewed
Keywords Power physics Field mathematics Qualia Artificial consciousness Dream
Key finding Proposes that consciousness can be modeled as a distributed computing system where individual dreams, collective unconsciousness, and the real world correspond to different configurations of computing power allocation.

Abstract

Author: 郭洋洋(Guo Yangyang)ORCID:0009-0006-6669-1790 Corresponding Email:gyy-goes@foxmail.com DOI:10.5281/zenodo.21709069 摘要(Abstract) 中文摘要:本文提出了一个统一解释单人梦境、集体无意识与现实世界本质的意识算力分布式模型 (CCPDM)。该模型基于作者亲身经历的梦境三阶段进化实验,结合《乌合之众》中观察到的集体智商衰减现象,首次将意识现象量化为“算力分配”问题,为意识研究提供了可量化、可验证的全新理论框架。本模型有效解决了传统神经科学无法解释的“梦境中前额叶关闭”与“集体智商悖论”两大核心难题,打通了单人意识、集体意识与现实世界的理论关联,为意识领域的后续研究提供了清晰的方向与可验证的理论支撑。 Abstract: This paper proposes a Consciousness Computing Power Distributed Model (CCPDM) that unifies the explanation of the essence of individual dreams, collective unconsciousness, and the real world. Based on the author’s personal experience of the three-stage evolution experiment of dreams and combined with the phenomenon of collective IQ decay observed in The Crowd: A Study of the Popular Mind, this model quantifies consciousness as a "computing power allocation" problem for the first time, providing a new quantifiable and verifiable theoretical framework for consciousness research. This model effectively solves two core problems that traditional neuroscience cannot explain: "the prefrontal cortex shutdown during dreams" and the "collective IQ paradox", connects the theoretical links between individual consciousness, collective consciousness, and the real world, and provides a clear direction and verifiable theoretical support for subsequent research in the field of consciousness. 关键词:意识算力分布式模型;双算力系统;集体无意识;共识实在论;梦境意识Key words: Consciousness Computing Power Distributed Model; Dual Computing Power System; Collective Unconsciousness; Consensus Realism; Dream Consciousness 核心发现: 1. 人类大脑存在双算力系统:本能脑 (高算力、低逻辑、亿万倍速) 与前额叶 (低算力、高逻辑、线性速) 2. The human brain has two computing systems: the instinctive brain (high computing power, low logic, operating at billions of times speed) and the prefrontal lobe (low computing power, high logic, linear speed). 3. 单人梦境 = 单节点意识系统,由单个大脑独立运维,算力有限导致 NPC 智能低下与场景不稳定 4. A solitary dream = a single-node consciousness system, independently operated by one brain. Limited computing power results in low intelligence of NPCs and unstable scenarios. 5. 集体无意识 = 临时多节点集群系统,所有节点关闭前额叶仅运行本能脑程序,总算力增加但整体智能呈指数级下降 6. Collective unconscious = a temporary multi-node cluster system. All nodes shut down their prefrontal cortices and run only instinctive brain programs; total computing power rises, yet overall intelligence declines exponentially. 7. 现实世界 = 永久分布式共识系统,由 70 亿人类大脑并行运维,通过共识校验机制实现极高稳定性 8. The real world = a permanent distributed consensus system, operated in parallel by 7 billion human brains, achieving extremely high stability through consensus verification mechanisms

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