A Verifiable Multi-Secret Sharing Scheme Based on ℓ-Intersection Pair of Cyclic Codes

IF 0.6 4区 计算机科学 Q4 COMPUTER SCIENCE, THEORY & METHODS
Md Ajaharul Hossain, Ramakrishna Bandi
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引用次数: 0

Abstract

A verifiable multi-secret sharing (VMSS) scheme addresses various security issues, helping in cheating detection and cheater identification. The dimension of the intersection of a given pair of cyclic codes over a finite field [Formula: see text] is represented by [Formula: see text]. In this paper, we propose a VMSS scheme based on an [Formula: see text]-intersection pair of cyclic codes. The proposed scheme is very useful for sharing a large number of secrets. If [Formula: see text] is the number of secrets in a threshold [Formula: see text] scheme, then for [Formula: see text], the computational complexity and the public values required in the reconstruction phase are much less compared to many existing schemes in the literature. Overall, the proposed scheme comprises nearly all the features, like being verifiable, testing participants’ integrity, checking Verifier frauds, and most importantly, it is of multi-use type.
基于ℓ-交集对循环码的可验证多密共享方案
可验证多机密共享(VMSS)方案解决了各种安全问题,有助于发现作弊和识别作弊者。有限域上一对给定循环码的交集维数[公式:见正文]用[公式:见正文]表示。在本文中,我们提出了一种基于一对循环码[式:见正文]交集的 VMSS 方案。所提出的方案对于共享大量秘密非常有用。如果[公式:见正文]是阈值[公式:见正文]方案中的秘密数量,那么对于[公式:见正文],与文献中的许多现有方案相比,计算复杂度和重构阶段所需的公共值都要少得多。总之,所提出的方案几乎包含了所有特点,如可验证、测试参与者的完整性、检查验证者的欺诈行为,最重要的是,它是多用途类型的。
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来源期刊
International Journal of Foundations of Computer Science
International Journal of Foundations of Computer Science 工程技术-计算机:理论方法
CiteScore
1.60
自引率
12.50%
发文量
63
审稿时长
3 months
期刊介绍: The International Journal of Foundations of Computer Science is a bimonthly journal that publishes articles which contribute new theoretical results in all areas of the foundations of computer science. The theoretical and mathematical aspects covered include: - Algebraic theory of computing and formal systems - Algorithm and system implementation issues - Approximation, probabilistic, and randomized algorithms - Automata and formal languages - Automated deduction - Combinatorics and graph theory - Complexity theory - Computational biology and bioinformatics - Cryptography - Database theory - Data structures - Design and analysis of algorithms - DNA computing - Foundations of computer security - Foundations of high-performance computing
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