付费电视系统访问控制中改进的一对多认证方案

Huaqun Wang, Bo Qin
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引用次数: 22

摘要

相互认证在移动付费电视系统中非常重要。传统的身份验证方案使用一对一的传递,即每个请求都有一个身份验证消息从前端系统传递到订阅者。这种传输占用太多带宽,因此效率低下且成本高昂。针对移动付费电视系统的访问控制,Sun等人于2009年提出了一对多认证方案。在一对多身份验证方案中,对于多个请求,从前端系统(HES)只向订阅者广播一条身份验证消息。Sun等人声称他们的方案是安全的,并提供匿名认证以保护用户隐私。然而,作者证明了他们的方案有一个致命的弱点。攻击者在没有任何秘密信息的情况下,不仅可以成功地模拟移动设备(MS)来欺骗HES,而且可以模拟HES来欺骗MS。本文的研究结果对设计和开发用户认证系统的安全工程师具有重要的指导意义。在此基础上,设计了一种基于双线性对的一对多认证方案。在随机oracle模型中给出了形式化的安全性证明。此外,还对该方案进行了性能分析。分析结果表明,该认证方案传输消息短,可以应用于带宽有限的环境中。同时,该方案也是付费电视系统中第一个安全的一对多访问控制认证方案。
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Improved one-to-many authentication scheme for access control in pay-TV systems
Mutual authentication is important in a mobile pay-TV system. Traditional authentication schemes make use of one-to-one delivery, that is, one authentication message per request is delivered from a head-end system to subscriber. This delivery occupies too much bandwidth and therefore is inefficient and costly. One-to-many authentication scheme for access control in mobile pay-TV systems was proposed by Sun et al. in 2009. In one-to-many authentication scheme, only one authentication message for multiple requests is broadcasted from the head-end system (HES) to subscribers. Sun et al. claimed that their scheme is secure and provides anonymous authentication for protecting user privacy. However, the authors demonstrate that their scheme has a critical weakness. An attacker without any secret information can not only successfully impersonate mobile set (MS) to cheat the HES but also impersonate HES to cheat MS. The authors result is important for security engineers who design and develop user authentication systems. Afterwards, the authors design a novel one-to-many authentication scheme from bilinear pairings. They give the formal security proof in the random oracle model. In addition, they present the performance analysis of our scheme. The analysis results showed that their novel authentication scheme has shorter transmission message and can be applied in the environment which has limited bandwidth. At the same time, their scheme is also the first secure one-to-many authentication scheme for access control in pay-TV systems.
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