Defying Censorship with Multi-Circuit Tor and Linear Network Coding

Anna Engelmann, A. Jukan
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Abstract

Anonymity networks are an increasingly important part of Internet evolution to providing practical mechanisms to enhance anonymity and security of network users. The best known anonymity network, The Onion Routing (Tor), is not only subject to user deanonymization attacks but also subject to censorship attacks by blocking the public and secret Tor entry routers, e.g., bridges, or by jamming Tor traffic to prevent users to access Tor network. To help further evolution of anonymity networks, we focus in this work on censorship attacks, and propose to enhance the well-known multipath Tor technique with linear network coding (LNC). We analyze anonymity, privacy and censorship success considering different types of adversaries and the amount of honest and compromised components in the Tor and in the underlying network. The results show that LNC can significantly improve the robustness of Tor against censorship and maintain sufficient anonymity and privacy levels.
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用多电路Tor和线性网络编码对抗审查
匿名网络为提高网络用户的匿名性和安全性提供了切实可行的机制,是互联网发展的重要组成部分。最著名的匿名网络洋葱路由(Tor)不仅受到用户去匿名化攻击,而且还受到审查攻击,通过阻止公共和秘密Tor入口路由器,例如桥接器,或通过干扰Tor流量来阻止用户访问Tor网络。为了帮助匿名网络的进一步发展,我们将重点放在审查攻击上,并提出用线性网络编码(LNC)增强著名的多路径Tor技术。我们分析匿名、隐私和审查成功,考虑到不同类型的对手,以及Tor和底层网络中诚实和受损组件的数量。结果表明,LNC可以显著提高Tor对审查的鲁棒性,并保持足够的匿名性和隐私水平。
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