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Parallel Execution Fee Mechanisms

delete2026-01-01
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PRE
AI
A
Abdoulaye Ndiaye *
DOI:10.1007/978-3-032-00492-5_16delete
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Abstract

Abstract

En 中文
This paper investigates how pricing schemes can achieve efficient allocations in blockchain systems featuring multiple transaction queues under a global capacity constraint. We model a capacity-constrained blockchain where users submit transactions to different queues-each representing a submarket with unique demand characteristics-and decide to participate based on posted prices and expected delays. We find that revenue maximization tends to allocate capacity to the highest-paying queue, whereas welfare maximization generally serves all queues. Optimal relative pricing of different queues depends on factors such as market size, demand elasticity, and the balance between local and global congestion. My results have implications for the implementation of local congestion pricing for evolving blockchain architectures, including parallel transaction execution, directed acyclic graph (DAG)-based systems, and multiple concurrent proposers.
Keywords:
Blockchain
Fintech
Transactions
Parallel Execution
Fee Markets
Consensus

Journal

F
FINANCIAL CRYPTOGRAPHY AND DATA SECURITY. FC 2025 INTERNATIONAL WORKSHOPS, CAAW 2025 AND WTSC 2025, PT I
IF:
0
Papers:
16
Citations:
0

Organization

N
new york university
Scholars:
6.1K
Papers: 2.9K
Citations: 1