Paper 2026/669

Braess Paradox in Layer-2 Blockchain Payment Networks

Arad Kotzer, Technion - Israel Institute of Technology
Ori Rottenstreich, Technion - Israel Institute of Technology
Abstract

Payment channel networks (PCNs) are a leading method to deal with the scalability limitations of blockchain networks. PCNs allow users to execute transactions without committing them to the blockchain by relying on predefined payment channels. Transactions between pairs of users without a connecting channel are also supported through a path of multiple channels. Serving such transactions involves fees paid to intermediate users. In this paper, we uncover the potential existence of the Braess paradox in payment networks: Sometimes, establishing a new payment channel can increase the fees paid for serving some fixed transactions. We study conditions for the paradox to appear under two different models of fees: Liquidity-based fees as a function of the transaction value jointly with the channel liquidity values and proportional fees which are based only on the transaction value. We also provide indications for the appearance of the paradox based on real data from Lightning, a popular payment channel network of Bitcoin. Last, we discuss methods to mitigate the paradox upon establishing a new payment channel.

Metadata
Available format(s)
PDF
Category
Applications
Publication info
Published elsewhere. Minor revision. IEEE Transactions on Networking
Keywords
BlockchainPayment ChannelsNetwork Algorithms
Contact author(s)
aradk @ campus technion ac il
or @ technion ac il
History
2026-04-07: approved
2026-04-06: received
See all versions
Short URL
https://ia.cr/2026/669
License
Creative Commons Attribution
CC BY

BibTeX

@misc{cryptoeprint:2026/669,
      author = {Arad Kotzer and Ori Rottenstreich},
      title = {Braess Paradox in Layer-2 Blockchain Payment Networks},
      howpublished = {Cryptology {ePrint} Archive, Paper 2026/669},
      year = {2026},
      url = {https://eprint.iacr.org/2026/669}
}
Note: In order to protect the privacy of readers, eprint.iacr.org does not use cookies or embedded third party content.