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Fabric-X: Scaling Hyperledger Fabric for Asset Exchange

  • Elli Androulaki
  • , Marcus Brandenburger
  • , May Buzaglo Rosenbaum
  • , Angelo De Caro
  • , Kaoutar Elkhiyaoui
  • , Alexandros Filios
  • , Liran Funaro
  • , Yacov Manevich
  • , Hagar Meir
  • , Senthilnathan Natarajan
  • , Manish Sethi
  • , Yoav Tock

Research output: Chapter in Book/Report/Conference proceedingConference contributionpeer-review

Abstract

The adoption of Distributed Ledger Technology (DLT) for critical financial infrastructures like Central Bank Digital Currencies (CBDCs) is hindered by a significant performance gap. Permissioned blockchains such as Hyperledger Fabric, which are conceptually suitable and have become popular platform used in many production deployments today, are nevertheless limited by architectural bottlenecks. Their monolithic peer design and consensus mechanisms prevent them from achieving the required scale for such demanding applications. This paper presents Fabric-X, a fundamental re-architecture of Hyperledger Fabric that addresses these challenges end-to-end. We have open-sourced Fabric-X as part of the Linux Foundation Decentralized Trust at github.com/hyperledger/fabric-x. We decompose the monolithic peer into independently scalable microservices for endorsement, validation, and committing. To maximize parallelism, we introduce a transaction dependency graph that enables the safe, concurrent validation of transactions across multiple blocks. Complementing the peer redesign, we introduce Arma, a novel sharded Byzantine Fault Tolerant (BFT) ordering service that dramatically increases throughput by ordering compact transaction digests rather than full transaction payloads. We implemented and benchmarked this framework with a UTXO-based CBDC application. Our evaluation demonstrates a peak throughput exceeding 100,000 transactions per second (TPS) - a multiple-orders-of-magnitude improvement over the standard implementation. This work proves that permissioned DLTs can be engineered for national-scale payment systems, providing a resilient and highly performant foundation for practical CBDC deployments and the integration of advanced, computationally intensive features.

Original languageEnglish
Title of host publicationSIGMOD Companion 2026 - Companion of the International Conference on Management of Data
PublisherAssociation for Computing Machinery, Inc
Pages162-174
Number of pages13
ISBN (Electronic)9798400724503
DOIs
StatePublished - 30 May 2026
Externally publishedYes
Event2026 ACM International Conference on Management of Data, SIGMOD 2026 - Bengaluru, India
Duration: 31 May 20265 Jun 2026

Publication series

NameSIGMOD Companion 2026 - Companion of the International Conference on Management of Data

Conference

Conference2026 ACM International Conference on Management of Data, SIGMOD 2026
Country/TerritoryIndia
CityBengaluru
Period31/05/265/06/26

Bibliographical note

Publisher Copyright:
© 2026 Owner/Author.

Keywords

  • bft consensus
  • blockchain
  • cbdc
  • hyperledger fabric
  • scalability
  • utxo

ASJC Scopus subject areas

  • Information Systems
  • Computer Science Applications
  • Software
  • Artificial Intelligence

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