Feedback-Coupled Memory Systems in Continuous Time
Stefano Grassi
Abstract
The Feedback-Coupled Memory Systems (FCMS) architecture formalizes closed-loop coordination through four abstract operators, two of which - the agent update operator fi and the environmental update operator Ψ - are left axiomatically undefined in the original framework. To address this, fi is defined by Mechanism-Based Intelligence (MBI), where agents update locally through a decentralized price mechanism and economic principles, and Ψ is defined by the Coupled Memory Graph Process (CMGP), a non-Markovian framework where the environment is treated as a physical substrate that records and responds to trajectory history coherently without external forcing. The resulting continuous-time FCMS instantiation achieves Lyapunov global dissipativity governed by the computable threshold 4β2 < 2ημγ2. This generalizes both the discrete FCMS stability condition 4ηβ2 < γ and CMGP's physical bifurcation threshold αc = 1/K, confirming that memory dissipation must outpace feedback gain as a universal organizing principle. Numerical simulation with N=2 agents and mean-field validation at N=106 confirm the stability threshold and the self-reinforcing coordination cascade that emerges when it is violated.
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Paper details
Categories: cs.AI, cs.MA
19 pages, 4 figures. Extends arXiv:2603.11560 to continuous time. Code: github.com/stevefatz95/fcms-continuous