Foundations of Transaction Fee Mechanism Design
Hao Chung, Elaine Shi
摘要
In blockchains such as Bitcoin and Ethereum, users compete in a transaction fee auction to get their transactions confirmed in the next block. A line of recent works set forth the desiderata for a "dream" transaction fee mechanism (TFM), and explored whether such a mechanism existed. A dream TFM should satisfy 1) user incentive compatibility (UIC), i.e., truthful bidding should be a user's dominant strategy; 2) miner incentive compatibility (MIC), i.e., the miner's dominant strategy is to faithfully implement the prescribed mechanism; and 3) miner-user side contract proofness (SCP), i.e., no coalition of the miner and one or more user(s) can increase their joint utility by deviating from the honest behavior. The weakest form of SCP is called 1-SCP, where we only aim to provide resilience against the collusion of the miner and a single user. Sadly, despite the various attempts, to the best of knowledge, no existing mechanism can satisfy all three properties in all situations.
Since the TFM departs from classical mechanism design in modeling and assumptions, to date, our understanding of the design space is relatively little. In this paper, we further unravel the mathematical structure of transaction fee mechanism design by proving the following results:
• Can we have a dream TFM? We prove a new impossibility result: assuming finite block size, no single-parameter, non-trivial, possibly randomized TFM can simultaneously satisfy UIC and 1-SCP. Consequently, no non-trivial TFM can satisfy all three desired properties simultaneously. This answers an important open question raised by Roughgarden in his recent work.
• Rethinking the incentive compatibility notions. We observe that the prevalently adopted incentive compatibility notions may be too draconian and somewhat flawed. We rectify the existing modeling techniques, and suggest a relaxed incentive compatibility notion that captures additional hidden costs of strategic deviation. We construct a new mechanism called the "burning second-price auction", and show that it indeed satisfies the new incentive compatibility notions. We additionally prove that the use of randomness is necessary under the new incentive compatibility notions for "useful" mechanisms that resist the coalitions of the miner and at least 2 users.
• Do the new design elements make a difference? Unlike classical mechanisms, TFMs may employ a couple new design elements that are idiosyncratic to blockchains. For example, a burn rule (employed by Ethereum's EIP-1559) allows part to all of the payment from the users to be burnt rather than paid to the miner. Some mechanisms also allow unconfirmed transactions to be included in the block, to set the price for others. Our work unveils how these new design elements actually make a difference in TFM design, allowing us to achieve incentive compatible properties that would otherwise be impossible.
问问这篇 Paper
智能体会读完全文。
Lune 把这篇 Paper 索引到了每一个公式,引用它的顶会 Paper 也一样。你提问,回答直接引用原文。
引用它的顶会 Paper10
- Empirical Analysis of EIP-1559: Transaction Fees, Waiting Times, and Consensus SecurityYulin Liu, Yuxuan Lu, Kartik Nayak, Fan Zhang 等CCS 2022 · 被引用 78 次
- Perils of Parallelism: Transaction Fee Mechanisms under Execution UncertaintySarisht Wadhwa, Aviv Yaish, Fan Zhang, Kartik NayakUSENIX Security 2026 · 被引用 3 次
- Mad-Dag: Protecting Blockchain Consensus From MEVRoi Bar Zur, Ittay Eyal, Aviv TamarS&P 2026 · 被引用 3 次
- Prrr: Personal Random Rewards for Blockchain ReportingHongyin Chen, Yubin Ke, Xiaotie Deng, Ittay EyalS&P 2026 · 被引用 2 次
- Multi-parameter Mechanisms for Consumer Surplus MaximizationTomer Ezra, Daniel Schoepflin, Ariel ShaulkerSTOC 2025 · 被引用 2 次
它引用的顶会 Paper4
- Flash Boys 2.0: Frontrunning in Decentralized Exchanges, Miner Extractable Value, and Consensus InstabilityPhilip Daian, Steven Goldfeder, Tyler Kell, Yunqi Li 等S&P 2020 · 被引用 607 次
- On the Instability of Bitcoin Without the Block RewardMiles Carlsten, Harry A. Kalodner, S. Matthew Weinberg, Arvind NarayananCCS 2016 · 被引用 387 次
- Spurt: Scalable Distributed Randomness Beacon with Transparent SetupSourav Das, Vinith Krishnan, Irene Miriam Isaac, Ling RenS&P 2022 · 被引用 80 次
- RandPiper - Reconfiguration-Friendly Random Beacons with Quadratic CommunicationAdithya Bhat, Nibesh Shrestha, Zhongtang Luo, Aniket Kate 等CCS 2021 · 被引用 5 次
相关 Paper
- Deterring A Small Collusion is All You NeedYotam GafniWWW 2026
- Foundations of Platform-Assisted AuctionsHao Chung, Ke Wu, Elaine ShiCRYPTO 2025
- Price Manipulability in First-Price AuctionsJohannes Brustle, Paul Dütting, Balasubramanian SivanWWW 2022 · 被引用 2 次
- A Data-Driven Metric of Incentive CompatibilityYuan Deng, Sébastien Lahaie, Vahab S. Mirrokni, Song ZuoWWW 2020 · 被引用 18 次
- Boosting Gas Revenues of Ethereum MinersTogzhan Barakbayeva, Soroush Farokhnia, Amir K. Goharshady, Sergei NovozhilovICSE 2026
