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Fernando Paredes García

Publications and source records attributed to Fernando Paredes García.

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Axiomatic shared-medium coordination for stigmergic systems

Stigmergic coordination has many medium-specific formalizations. This paper formulates a medium-agnostic comparison layer whose comparison object is the abstract enabled-response signature. For metadata refinements, we prove that a coarse quotient is response-adequate exactly when each quotient fiber is response-aligned. When that fails, there is a canonical coarsest response-adequate repair, and every response-adequate repair must retain at least the corresponding fiberwise number of response classes. On the dynamic side, quotient-compatible matched writes preserve one-step behavior, freshness-conditional actions yield a one-step non-liftability obstruction, and the matched one-step result lifts to finite serial traces. These results are instantiated for a tuple-space medium and a timestamped virtual-stigmergic dataspace. The result is a medium-agnostic comparison framework with one explicit positive/negative theorem cycle; richer pathwise and concurrent semantics remain outside scope.

cs.DC

Ledger-State Stigmergy: A Formal Framework for Indirect Coordination Grounded in Distributed Ledger State

Autonomous software agents on blockchains solve distributed-coordination problems by reading shared ledger state instead of exchanging direct messages. Liquidation keepers, arbitrage bots, and other autonomous on-chain agents watch balances, contract storage, and event logs; when conditions change, they act. The ledger therefore functions as a replicated shared-state medium through which decentralized agents coordinate indirectly. This form of indirect coordination mirrors what Grassé called stigmergy in 1959: organisms coordinating through traces left in a shared environment, with no central plan. Stigmergy has mature formalizations in swarm intelligence and multi-agent systems, and on-chain agents already behave stigmergically in practice, but no prior application-layer framework cleanly bridges the two. We introduce Indirect coordination grounded in ledger state (Coordinación indirecta basada en el estado del registro contable) as a ledger-specific applied definition that maps Grassé's mechanism onto distributed ledger technology. We operationalize this with a state-transition formalism, identify three recurring base on-chain coordination patterns (State-Flag, Event-Signal, Threshold- Trigger) together with a Commit-Reveal sequencing overlay, and work through a State-Flag task-board example to compare ledger-state coordination analytically with off-chain messaging and centralized orchestration. The contribution is a reusable vocabulary, a ledger-specific formal mapping, and design guidance for decentralized coordination over replicated shared state at the application layer.

cs.DC