Cryptanalysis of the Anshel-Anshel-Goldfeld-Lemieux Key Agreement Protocol

A. Myasnikov, A. Ushakov
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引用次数: 26

Abstract

The Anshel-Anshel-Goldfeld-Lemieux (abbreviated AAGL) key agreement protocol [Contemp. Math. 418: 1–34, 2006] is proposed to be used on low-cost platforms which constraint the use of computational resources. The core of the protocol is the concept of an Algebraic Eraser TM (abbreviated AE) which is claimed to be a suitable primitive for use within lightweight cryptography. The AE primitive is based on a new and ingenious idea of using an action of a semidirect product on a (semi)group to obscure involved algebraic structures. The underlying motivation for AAGL protocol is the need to secure networks which deploy Radio Frequency Identification (RFID) tags used for identification, authentication, tracing and point-of-sale applications. In this paper we revisit the computational problem on which AE relies and heuristically analyze its hardness. We show that for proposed parameter values it is impossible to instantiate a secure protocol. To be more precise, in 100% of randomly generated instances of the protocol we were able to find a secret conjugator z generated by the TTP algorithm (part of AAGL protocol).
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anshell - anshell - goldfield - lemieux密钥协议的密码分析
anshell - anshell - goldfield - lemieux(简称AAGL)密钥协议[同时代]。[数学]. 418:1 - 34,2006]被提议用于限制计算资源使用的低成本平台。该协议的核心是代数橡皮擦TM(简称AE)的概念,它被认为是在轻量级加密中使用的合适原语。AE原语是基于一种新颖而巧妙的思想,即利用半直接积在半群上的作用来模糊所涉及的代数结构。AAGL协议的根本动机是需要安全的网络部署射频识别(RFID)标签用于识别,认证,跟踪和销售点应用。本文回顾了声发射所依赖的计算问题,并对其硬度进行了启发式分析。我们表明,对于提议的参数值,不可能实例化安全协议。更准确地说,在100%随机生成的协议实例中,我们能够找到由TTP算法(AAGL协议的一部分)生成的秘密共轭子z。
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