首页> 外文会议>Singapore Cyber-Security Conference >Directed Transitive Signature on Directed Tree
【24h】

Directed Transitive Signature on Directed Tree

机译:定向的树木的传递签名

获取原文

摘要

In early 2000's, Rivest [1,2] and Micali [2] introduced the notion of transitive signature, which allows a third party with public key to generate a valid signature for a composed edge (v_i, v_k), from the signatures for two edges (v_i, v_j) and (v_j, v_k). Since then, a number of works, including [2,3,4,5,6], have been devoted on transitive signatures. Most of them address the undirected transitive signature problem, and the directed transitive signature is still an open problem. S. Hohen-berger [4] even showed that a directed transitive signature implies a complex mathematical group, whose existence is still unknown. Recently, a few directed transitive signature schemes [7,8] on directed trees are proposed. The drawbacks of these schemes include: the size of composed signature increases linearly with the number of nested applications of composition and the creating history of composed edge is not hidden properly. This paper presents a RSA-Accumulator [9] based scheme DTTS--a Directed-Tree-Transitive Signature scheme, to address these issues. Like previous works [7,8], DTTS is designed only for directed trees, however, it features with constant (composed) signature size and privacy-preserving property. We prove that DTTS is transitively unforgeable under adaptive chosen message attack in the standard model.
机译:在2000年初,RIVEST [1,2]和习惯[2]引入了传递签名的概念,它允许第三方与公钥生成一个组成边缘(V_I,V_K)的有效签名,从两个签名中边缘(v_i,v_j)和(v_j,v_k)。从那以后,已经致力于在传递签名上致力于包括[2,3,4,5,6]的作品。其中大多数都在解决了无向的传递签名问题,并且定向的传递签名仍然是一个打开问题。 S. Hohen-Berger [4]甚至认为定向的传递签名意味着一个复杂的数学组,其存在仍然是未知的。最近,提出了一些定向树木上的一条定向的传递签名方案[7,8]。这些方案的缺点包括:组成签名的大小随着组成的嵌套应用程序的数量而导致,并且没有正确隐藏组成边缘的创建历史。本文介绍了基于RSA累加器[9]的方案DTTS - 一种定向树传递签名方案,以解决这些问题。与以前的作品一样[7,8],DTTS仅针对指导树设计,但是它具有常量(已被组成)签名大小和隐私保留属性的特征。我们证明DTT在标准模型中的自适应所选消息攻击下是过境的。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号