Optimizing Packet Scheduling and Path Selection for Anonymous Voice Calls

David Schatz, M. Rossberg, G. Schaefer
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引用次数: 1

Abstract

Onion routing is a promising approach to implement anonymous voice calls. Uniform-sized voice packets are routed via multiple relays and encrypted in layers to avoid a correlation of packet content in different parts in the network. By using pre-built circuits, onion encryption may use efficient symmetric ciphers. However, if packets are forwarded by relays as fast as possible—to minimize end-to-end latency—network flow watermarking may still de-anonymize users. A recently proposed countermeasure synchronizes the start time of many calls and batch processes voice packets with the same sequence number in relays. However, if only a single link with high latency is used, it will also negatively affect latency of all other calls. This article explores the limits of this approach by formulating a mixed integer linear program (MILP) that minimizes latency “bottlenecks” in path selection. Furthermore, we suggest a different scheduling strategy for voice packets, i.e. implementing independent de-jitter buffers for all flows. In this case, a MILP is used to minimize the average latency of selected paths. For comparison, we solve the MILPs using latency and bandwidth datasets obtained from the Tor network. Our results show that batch processing cannot reliably achieve acceptable end-to-end latency (below 400 ms) in such a scenario, where link latencies are too heterogeneous. In contrast, when using de-jitter buffers for packet scheduling, path selection benefits from low latency links without degrading anonymity. Consequently, acceptable end-to-end latency is possible for a large majority of calls.
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优化匿名语音呼叫的报文调度和选路
洋葱路由是实现匿名语音呼叫的一种很有前途的方法。统一大小的语音数据包通过多个中继路由,并分层加密,以避免网络中不同部分的数据包内容相互关联。通过使用预先构建的电路,洋葱加密可以使用有效的对称密码。然而,如果数据包通过中继尽可能快地转发——以最小化端到端延迟——网络流水印仍然可能使用户去匿名化。最近提出的一种对策是同步多个呼叫的开始时间,并在中继中批量处理具有相同序列号的语音数据包。但是,如果只使用具有高延迟的单个链路,它也会对所有其他调用的延迟产生负面影响。本文通过制定一个混合整数线性规划(MILP)来探讨这种方法的局限性,该规划最大限度地减少了路径选择中的延迟“瓶颈”。此外,我们提出了一种不同的语音数据包调度策略,即为所有流实现独立的去抖动缓冲。在这种情况下,使用MILP来最小化所选路径的平均延迟。为了比较,我们使用从Tor网络获得的延迟和带宽数据集来解决milp。我们的结果表明,在这种情况下,批处理不能可靠地实现可接受的端到端延迟(低于400毫秒),其中链路延迟太异构。相反,当使用去抖动缓冲区进行数据包调度时,路径选择从低延迟链路中受益,而不会降低匿名性。因此,对于大多数调用来说,可接受的端到端延迟是可能的。
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