结账:用户控制的匿名化客户忠诚度计划

Matthew Gregoire, Rachel Thomas, Saba Eskandarian
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摘要

为了抵制在现代生活的方方面面强加给我们的无处不在的监控制度,我们需要能够颠覆监控系统的技术工具。遗憾的是,虽然密码学工具经常证明我们可以构建保护用户隐私的系统,但从事监控的企业实体采用这些工具的动力却很有限,因为它们往往与利润动机相冲突。本文展示了在日常生活的一个特殊方面--客户忠诚度计划--用户如何在不需要监视者合作或改变其行为的情况下颠覆监视并获得匿名性。我们介绍了 CheckOut 系统,该系统允许用户协调购物者的大型匿名集,以隐藏人群中每个特定用户的身份和购买习惯。CheckOut扩大了过去颠覆忠诚度监控的努力,并使之系统化,过去的忠诚度监控主要是临时性的手工操作,顾客通过实际交换忠诚度卡来掩盖自己的真实身份。CheckOut 允许扩大规模,同时确保必要的计算基础设施本身不会成为新的隐私失效集中点。对我们的方案尤为重要的是一个提供积分奖励的忠诚度计划协议,我们在此演示了 CheckOut 如何帮助用户在使用彼此的忠诚度账户时相互支付累积的忠诚度积分。我们提出了两种不同的机制来促进奖励积分的再分配,并在功能、性能和安全性方面进行了权衡。
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CheckOut: User-Controlled Anonymization for Customer Loyalty Programs
To resist the regimes of ubiquitous surveillance imposed upon us in every facet of modern life, we need technological tools that subvert surveillance systems. Unfortunately, while cryptographic tools frequently demonstrate how we can construct systems that safeguard user privacy, there is limited motivation for corporate entities engaged in surveillance to adopt these tools, as they often clash with profit incentives. This paper demonstrates how, in one particular aspect of everyday life -- customer loyalty programs -- users can subvert surveillance and attain anonymity, without necessitating any cooperation or modification in the behavior of their surveillors. We present the CheckOut system, which allows users to coordinate large anonymity sets of shoppers to hide the identity and purchasing habits of each particular user in the crowd. CheckOut scales up and systematizes past efforts to subvert loyalty surveillance, which have been primarily ad-hoc and manual affairs where customers physically swap loyalty cards to mask their real identities. CheckOut allows increased scale while ensuring that the necessary computing infrastructure does not itself become a new centralized point of privacy failure. Of particular importance to our scheme is a protocol for loyalty programs that offer reward points, where we demonstrate how CheckOut can assist users in paying each other back for loyalty points accrued while using each others' loyalty accounts. We present two different mechanisms to facilitate redistributing rewards points, offering trade-offs in functionality, performance, and security.
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