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A Distributed Weighted Threshold Signature with Packing for Weight-Differentiated Blockchains

  • Beijing Institute of Technology

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

Abstract

In blockchain systems, threshold signatures are widely employed for their ability to distribute trust among multiple participants, thereby enhancing both security and decentralization. However, existing threshold signature schemes encounter several challenges in blockchain scenarios. First, they fail to accommodate weight-differentiated environments, such as proof-of-stake (PoS) systems. Second, key generation in most existing schemes usually depends on a trusted third-party dealer. Finally, their efficiency remains limited in large-scale applications. To overcome these issues, we propose a distributed weighted Schnorr threshold signature scheme with a packing property. The proposed scheme removes the need for a trusted dealer through distributed key generation (DKG) and integrates packed secret sharing with a hyper-invertible matrix to enable the efficient generation of multiple threshold signatures in a single execution. Moreover, by adopting the concept of a party controlling multiple evaluation points, the scheme naturally achieves weighted signing functionality. Security evaluations indicate that the proposed scheme effectively resists forgery attacks, and empirical experiments further verify its feasibility in practice. In general, our scheme achieves high efficiency and security, making it particularly suitable for PoS and other weight-differentiated blockchain systems.

Original languageEnglish
Title of host publicationBlockchain Technology and Application - 8th CCF China Blockchain Conference, CBCC 2025, Revised Selected Papers
EditorsLiehuang Zhu, Yi Sun, Dawu Gu, Jianming Zhu, Wei Li, Qianhong Wu, Xianhua Song, Zeguang Lu
PublisherSpringer Science and Business Media Deutschland GmbH
Pages354-377
Number of pages24
ISBN (Print)9789819229727
DOIs
Publication statusPublished - 2027
Externally publishedYes
Event8th CCF China Blockchain Conference, CCF CBCC 2025 - Shanghai, China
Duration: 18 Dec 202521 Dec 2025

Publication series

NameCommunications in Computer and Information Science
Volume3005 CCIS
ISSN (Print)1865-0929
ISSN (Electronic)1865-0937

Conference

Conference8th CCF China Blockchain Conference, CCF CBCC 2025
Country/TerritoryChina
CityShanghai
Period18/12/2521/12/25

Keywords

  • Schnorr signature
  • blockchain
  • distributed key generation
  • weighted threshold signature

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