English

Collusion-Resilience in Transaction Fee Mechanism Design

Computer Science and Game Theory 2025-09-16 v3 Theoretical Economics

Abstract

Users bid in a transaction fee mechanism (TFM) to get their transactions included and confirmed by a blockchain protocol. Roughgarden (EC'21) initiated the formal treatment of TFMs and proposed three requirements: user incentive compatibility (UIC), miner incentive compatibility (MIC), and a form of collusion-resilience called OCA-proofness. Ethereum's EIP-1559 mechanism satisfies all three properties simultaneously when there is no contention between transactions, but loses the UIC property when there are too many eligible transactions to fit in a single block. Chung and Shi (SODA'23) considered an alternative notion of collusion-resilience, called cc-side-contract-proofness (cc-SCP), and showed that, when there is contention between transactions, no TFM can satisfy UIC, MIC, and cc-SCP for any c1c\geq 1. OCA-proofness asserts that the users and a miner should not be able to "steal from the protocol." On the other hand, the cc-SCP condition requires that a coalition of a miner and a subset of users should not be able to profit through strategic deviations (whether at the expense of the protocol or of the users outside the coalition). Our main result is the first proof that, when there is contention between transactions, no (possibly randomized) TFM in which users are expected to bid truthfully satisfies UIC, MIC, and OCA-proofness.This result resolves the main open question in Roughgarden (EC'21). We also suggest several relaxations of the basic model that allow our impossibility result to be circumvented.

Keywords

Cite

@article{arxiv.2402.09321,
  title  = {Collusion-Resilience in Transaction Fee Mechanism Design},
  author = {Hao Chung and Tim Roughgarden and Elaine Shi},
  journal= {arXiv preprint arXiv:2402.09321},
  year   = {2025}
}
R2 v1 2026-06-28T14:48:38.155Z