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Anon-Pass: Practical Anonymous Subscriptions

机译:匿名通行证:实用的匿名订阅

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摘要

We present the design, security proof, and implementation of an anonymous subscription service. Users register for the service by providing some form of identity, which might or might not be linked to a real-world identity such as a credit card, a web login, or a public key. A user logs on to the system by presenting a credential derived from information received at registration. Each credential allows only a single login in any authentication window, or epoch. Logins are anonymous in the sense that the service cannot distinguish which user is logging in any better than random guessing. This implies unlinkability of a user across different logins.We find that a central tension in an anonymous subscription service is the service provider’s desire for a long epoch (to reduce server-side computation) versus users’ desire for a short epoch (so they can repeatedly “re-anonymize” their sessions). We balance this tension by having short epochs, but adding an efficient operation for clients who do not need unlinkability to cheaply re-authenticate themselves for the next time period.We measure performance of a research prototype of our protocol that allows an independent service to offer anonymous access to existing services. We implement a music service, an Android-based subway-pass application, and a web proxy, and show that adding anonymity adds minimal client latency and only requires 33 KB of server memory per active user.
机译:我们介绍了匿名订阅服务的设计,安全证明和实现。用户通过提供某种形式的身份来注册服务,该身份可能会或可能不会与真实世界的身份相关联,例如信用卡,Web登录名或公钥。用户通过显示从注册时接收到的信息得出的凭证来登录系统。每个凭据在任何身份验证窗口或纪元中仅允许一次登录。从某种意义上说,服务比随机猜测更好地区分了哪个用户正在登录,因此登录名是匿名的。这意味着用户无法跨不同的登录进行链接。我们发现,匿名订阅服务中的一个主要问题是服务提供商对较长时间(减少服务器端计算)的需求与用户较短时间的需求(因此他们可以反复“重新匿名化”他们的会话)。我们通过缩短时间来平衡这种紧张关系,但是为不需要链接的客户增加了有效的操作,以在下一个时间段廉价地重新进行身份验证。我们评估了协议研究原型的性能,该协议允许独立服务提供匿名访问现有服务。我们实现了一项音乐服务,一个基于Android的Metro-pass应用程序和一个Web代理,并表明添加匿名性可以最大程度地减少客户端延迟,并且每个活动用户仅需要33 KB的服务器内存。

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