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Say Hello Again: Privacy Preserving Matchmaking Using Cloud in Encounter Based Mobile Social Networks

机译:再次打招呼:在基于Encounter的移动社交网络中使用云来保护隐私对接会

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Mobile social networks (MSNs) are getting increasingly popular day by day. With the help of MSNs people can connect with each other online as well as offline. One of the famous applications of MSNs is profile matchmaking in which users share their interests in order to find mutual friends. However, the user of such application can be a victim of various privacy related attacks due to the revelations of user's personal interests during profile matchmaking. More recent dimension of MSN is encounter-based social networks. In this scenario, the users make social contacts while sharing a common location and time. Mobile devices record the encounter information when two users are within physical proximity and at a later time, their encounter history should be matched when they try to find each other again. In this paper, we propose a privacy preserving matchmaking protocol in which users share the encounter information and later utilize a cloud server to post encounter information in order to privately match their profiles with unknowns to whom they shared the encounter. In our protocol, neither the users nor the cloud server is able to discover the interests of either participants during matchmaking. To the best of our knowledge, this approach is the first attempt that combines encounter based social networks and fine-grained profile matchmaking. Towards the end of the paper, we present security analysis as well as performance evaluation that shows the effectiveness and feasibility of our protocol.
机译:移动社交网络(MSN)日益流行。借助MSN,人们可以在线和离线相互连接。 MSN的著名应用之一是配置文件匹配,用户可以通过共享他们的兴趣来找到共同的朋友。但是,由于个人资料匹配过程中用户个人兴趣的披露,此类应用程序的用户可能成为各种隐私相关攻击的受害者。 MSN的最新维度是基于遭遇的社交网络。在这种情况下,用户可以在共享共同的位置和时间的同时进行社交联系。当两个用户在物理上接近时,移动设备会记录遭遇信息,稍后,当他们再次尝试找到彼此时,他们的遭遇历史应该匹配。在本文中,我们提出了一种隐私保护的配对协议,在该协议中,用户共享遇到的信息,然后利用云服务器发布遇到的信息,以便将自己的个人资料与与他们共享遇到的未知数进行私有匹配。在我们的协议中,用户和云服务器都无法在配对过程中发现任何参与者的兴趣。据我们所知,这种方法是结合基于遭遇的社交网络和精细的个人档案匹配的首次尝试。在本文的最后,我们提出了安全性分析以及性能评估,以证明我们的协议的有效性和可行性。

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