Securing IOTA Blockchain Against Tangle Vulnerability by Using Large Deviation Theory

Yinfeng Chen, Yu Guo, Mingyue Wang, Enliang Xu, Hongcheng Xie, Rongfang Bie

Research output: Journal Publications and ReviewsRGC 21 - Publication in refereed journalpeer-review

7 Citations (Scopus)

Abstract

IOTA has emerged as a promising blockchain platform specially designed for the Internet of Things (IoT). Its distributed ledger, called tangle, adopts a directed acyclic graph (DAG) structure to achieve fast transaction confirmation and high scalability. While the tangle tremendously mitigates blockchain performance concerns relative to a traditional single chain, it simultaneously increases the potential risk of double-spending attacks. Utilizing constructing illegal tangle branches to substitute for legitimate ones, attackers inside IOTA can launch double-spending attacks and seriously compromise the tangle security. In this work, we take the first step toward investigating the problem of tangle vulnerability by leveraging the large deviation theory. The proposed scheme, called SecTangle, can assist IOTA in effectively reducing the tangle vulnerability to resist double-spending attacks. The core idea is to explore the security threshold defined and deduced to affect the robustness of the tangle by evaluating the probability of tangle vulnerability. By adjusting the critical factors of the security threshold, fake tangle branches can be found by IOTA efficiently to prevent double-spending attacks. Besides, we further devise a transaction recovery algorithm to recover time-sensitive legitimate transaction branches. This paper validates that the proposed scheme is efficient with comprehensive theoretical analysis and simulation experiments. © 2023 IEEE.
Original languageEnglish
Pages (from-to)1952-1965
JournalIEEE Internet of Things Journal
Volume11
Issue number2
Online published7 Jun 2023
DOIs
Publication statusPublished - 15 Jan 2024

Funding

This work was supported in part by the National Key Research and Development Program of China under Grant 2022ZD0115901; and in part by the National Natural Science Foundation of China Project under Grant 62177007, Grant 62102035, and Grant 71961022. This article was presented in part at the IEEE Global Communications Conference (GLOBECOM’22), Rio de Janeiro, Brazil, December 2022

Research Keywords

  • Blockchains
  • Distributed ledger
  • Distributed ledgers
  • Double-spending attack
  • Finance
  • Internet of Things
  • IOTA
  • Large deviation theory
  • Robustness
  • Scalability
  • Security
  • Tangle

Fingerprint

Dive into the research topics of 'Securing IOTA Blockchain Against Tangle Vulnerability by Using Large Deviation Theory'. Together they form a unique fingerprint.

Cite this