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May 31, 2026Scientia Sinica Informationis0 citations

Ternary Equilibrium Optimization Theory for Blockchain: Coupled Modeling and Attractor Regulation Mechanisms for System Security

JDJin DongFWFaguo WuZZZhiming Zheng

Key Points

  • The study aims to establish a framework for understanding the dynamic tension between security, efficiency, and decentralization in blockchain systems.
  • Proposed a nonlinear dynamic system-based ternary equilibrium optimization theory.
  • Used dynamical methods to model the coupled evolution mechanisms of the three factors.
  • Verified the theory's applicability through simulation experiments on the Chang'an chain platform.
  • Demonstrated that the structural optimal state of the three factors is unreachable within the given feasible region.
  • Established attractor regulation strategies to achieve dynamic balance within macro security boundaries.
  • Showed the theoretical validity and controllability of the proposed framework, facilitating sustainable operation of complex blockchain systems.

Abstract

作为数字经济的可信基础设施,区块链正通过催生新产业、新业态与新模式,加速数字技术对实体经济的深度赋能。随着其在跨链协同、政务治理、金融监管等应用场景中的广泛部署,系统在安全性、效率与去中心化三者之间的动态张力日益突出,呈现出非线性冲突、相互制约与反馈叠加等复杂系统特征。传统依赖工程经验的静态调参策略,难以适应系统结构性变化与长期演化行为;同时,跨链交互与大规模上链引发的负载与节点模式波动叠加系统强耦合非线性,使得固定参数与经验规则难以提供可解释、可验证的调控依据。针对三元张力演化机理缺乏统一可解析建模、长期稳定性缺少可证明保障的问题,本文提出基于非线性动力系统的三元平衡优化理论框架,以动力学方法系统刻画安全性、效率与去中心化三者之间的耦合演化机制。在给定可行域与控制资源上界的假设下,证明三元最优状态的结构性不可达,并基于李雅普诺夫稳定性设计结构吸引子与偏置吸引子调控策略,引导系统在宏观安全边界内实现动态平衡与目标导向优化。结合“长安链”平台,本文构建链上指标映射与调控反馈路径,并通过仿真实验验证三元平衡优化理论的解释力、可控性与工程适用性,为复杂区块链系统的安全可持续运行提供理论支撑与策略框架。

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Cite This Study

Dong et al. (2026) studied this question.

synapsesocial.com/papers/6a1bd1f65783ba022b6fd698https://doi.org/10.1360/ssi-2025-0498
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