English

An Introductory Study on the Power Consumption Overhead of ERC-4337 Bundlers

Performance 2025-11-24 v1 Networking and Internet Architecture

Abstract

Ethereum is currently the main blockchain ecosystem providing decentralised trust guarantees for applications ranging from finance to e-government. A common criticism of blockchain networks has been their energy consumption and operational costs. The switch from Proof-of-Work (PoW) protocol to Proof-of-Stake (PoS) protocol has significantly reduced this issue, though concerns remain, especially with network expansions via additional layers. The ERC-4337 standard is a recent proposal that facilitates end-user access to Ethereum-backed applications. It introduces a middleware called a bundler, operated as a third-party service, where part of its operational cost is represented by its power consumption. While bundlers have served over 500 million requests in the past two years, fewer than 15 official bundler providers exist, compared to over 100 regular Ethereum access providers. In this paper, we provide a first look at the active power consumption overhead that a bundler would add to an Ethereum access service. Using SmartWatts, a monitoring system leveraging Running Average Power Limit (RAPL) hardware interfaces, we empirically determine correlations between the bundler workload and its active power consumption.

Keywords

Cite

@article{arxiv.2511.16890,
  title  = {An Introductory Study on the Power Consumption Overhead of ERC-4337 Bundlers},
  author = {Andrei Arusoaie and Claudiu-Nicu Bărbieru and Oana-Otilia Captarencu and Paul-Flavian Diac and Emanuel Onica and Cosmin-Nicolae Vârlan},
  journal= {arXiv preprint arXiv:2511.16890},
  year   = {2025}
}

Comments

Accepted for the 9th IEEE International Symposium on Electrical and Electronics Engineering, ISEEE 2025; Copyright is with IEEE