English

Barriers to Collusion-resistant Transaction Fee Mechanisms

Computer Science and Game Theory 2024-02-14 v1 Theoretical Economics

Abstract

To allocate transactions to blocks, cryptocurrencies use an auction-like transaction fee mechanism (TFM). A conjecture of Roughgarden [44] asks whether there is a TFM that is incentive compatible for both the users and the miner, and is also resistant to off-chain agreements (OCAs) between these parties, a collusion notion that captures the ability of users and the miner to jointly deviate for profit. The work of Chung and Shi [12] tackles the problem using the different collusion resistance notion of side-channel proofness (SCP), and shows an impossibility given this notion. We show that OCA-proofness and SCP are different, with SCP being strictly stronger. We then fully characterize the intersection of deterministic dominant strategy incentive-compatible (DSIC) and OCA-proof mechanisms, as well as deterministic MMIC and OCA-proof ones, and use this characterization to show that only the trivial mechanism is DSIC, myopic miner incentive-compatible (MMIC) and OCA-proof. We also show that a randomized mechanism can be at most 0.842-efficient in the worst case, and that the impossibility of a non-trivial DSIC, MMIC and OCA-proof extends to a couple of natural classes of randomized mechanisms.

Keywords

Cite

@article{arxiv.2402.08564,
  title  = {Barriers to Collusion-resistant Transaction Fee Mechanisms},
  author = {Yotam Gafni and Aviv Yaish},
  journal= {arXiv preprint arXiv:2402.08564},
  year   = {2024}
}

Comments

29 pages

R2 v1 2026-06-28T14:47:29.610Z