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A performance vs. trust perspective in the design of end-point congestion control protocols

机译:端点拥塞控制协议设计中的性能与信任关系

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Receiver-driven TCP protocols delegate key congestion control functions to receivers. Their goal is to exploit information available only at receivers in order to improve latency and throughput in diverse scenarios ranging from wireless access links to wireline and wireless Web browsing. Unfortunately, in contrast to today's sender-driven protocols, receiver-driven congestion control introduces an incentive for misbehavior. Namely, the primary beneficiary of a flow (the receiver of data) has both the means and incentive to manipulate the congestion control algorithm in order to obtain higher throughput or reduced latency. We study the deployability of receiver-driven TCP in environments with untrusted receivers which may tamper with the congestion control algorithm for their own benefit. Using analytical modeling and extensive simulation experiments, we show that deployment of receiver-driven TCP must strike a balance between enforcement mechanisms, which can limit performance, and complete trust of end-points, which results in vulnerability to cheaters and even DoS attackers.
机译:接收器驱动的TCP协议将密钥拥塞控制功能委派给接收器。他们的目标是利用在接收者处提供的信息,以改善从无线接入链路到有线和无线网络浏览的不同方案中的延迟和吞吐量。遗憾的是,与今天的发件人驱动的协议相比,接收器驱动的拥塞控制引入了不当行为的激励。即,流量的主要受益者(数据接收者)具有操纵拥塞控制算法的手段和动力,以便获得更高的吞吐量或降低延迟。我们研究了接收器驱动的TCP在具有不受信任的接收器的环境中的可部署性,这些接收器可以篡改拥塞控制算法以其自身的利益。使用分析建模和广泛的仿真实验,我们表明接收器驱动的TCP部署必须在执法机制之间取得平衡,这可以限制绩效,并且完全信任终点,这导致欺骗甚至DOS攻击者。

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