Counter-Collusion Smart Contracts for Watchtowers in Payment Channel Networks
Yuhui Zhang, Dejun Yang, Guoliang Xue, Ruozhou Yu
Abstract
Payment channel networks (PCNs) are proposed to improve the cryptocurrency scalability by settling off-chain transactions. However, PCN introduces an undesirable assumption that a channel participant must stay online and be synchronized with the blockchain to defend against frauds. To alleviate this issue, watchtowers have been introduced, such that a hiring party can employ a watchtower to monitor the channel for fraud. However, a watchtower might profit from colluding with a cheating counterparty and fail to perform this job. Existing solutions either focus on heavy cryptographic techniques or require a large collateral. In this work, we leverage smart contracts through economic approaches to counter collusions for watchtowers in PCNs. This brings distrust between the watchtower and the counterparty, so that rational parties do not collude or cheat. We provide detailed analyses on the contracts and rigorously prove that the contracts are effective to counter collusions with minimal on-chain operations. In particular, a watchtower only needs to lock a small collateral, which incentivizes participation of watchtowers and users. We also provide an implementation of the contracts in Solidity and execute them on Ethereum to demonstrate the scalability and efficiency of the contracts.
Ask about this paper
Ask your agent about it.
Lune has read the top-tier papers around this one, so every answer names the papers it rests on.
Your agent calls
Lunesearch_papers
Free to start. No credit card required.
Terminal
Install the CLIlune papers get e9031d27-eb92-4fc5-a9f1-c43fa905cca3Related papers
- Sleepy Channels: Bi-directional Payment Channels without WatchtowersLukas Aumayr, Sri Aravinda Krishnan Thyagarajan, Giulio Malavolta, Pedro Moreno-Sanchez et al.CCS 2022 · 26 citations
- Thunderdome: Timelock-Free Rationally-Secure Virtual ChannelsZeta Avarikioti, Yuheng Wang, Yuyi WangUSENIX Security 2025
- Thor: A Virtual Payment Channel Network Construction Protocol over CryptocurrenciesQiushi Wei, Dejun Yang, Ruozhou Yu, Guoliang XueINFOCOM 2024 · 3 citations
- Anonymous Multi-Hop Locks for Blockchain Scalability and InteroperabilityGiulio Malavolta, Pedro Moreno-Sanchez, Clara Schneidewind, Aniket Kate et al.NDSS 2019 · 305 citations
- Atomic Multi-Channel Updates with Constant Collateral in Bitcoin-Compatible Payment-Channel NetworksChristoph Egger, Pedro Moreno-Sanchez, Matteo MaffeiCCS 2019 · 108 citations
