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Best-Effort Network Layer Packet Reordering in Support of Multipath Overlay Packet Dispersion

机译:支持多径覆盖分组色散的最佳努力网络层数据包重新排序

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Simultaneous use of multiple disjoint Internet paths holds promise for exploiting available bandwidth as well as reacting more quickly to Internet path faults. While routing overlay networks have provided a method for accessing these paths, out-of-order packet delivery, which results from dispersion of packets across paths of varying latency, severely degrades the performance of highly optimized transport protocols such as TCP, which assume largely in-order delivery. While traditional approaches perform reordering at the transport or application layers, such approaches have the disadvantage of entangling the complexity of reordering with their own operation, as well as requiring reimplementation for each protocol or application. Herein, we address these issues by proposing the modularization of packet reordering functionality as an optional, best-effort, network layer service for routing overlay networks. We empirically demonstrate the feasibility of this approach by showing that it can realize performance and reliability gains even using unmodified TCP in the face of highly multipath environments and heavy packet reordering.
机译:同时使用多个不相交的Internet路径,可以利用可用带宽以及更快地对Internet路径故障进行反应。虽然路由覆盖网络提供了一种用于访问这些路径的方法,但是从不同延迟的路径跨越分组的分组的分散导致的,虽然分组,但严重降低了高度优化的传输协议,例如TCP,这主要是在很大程度上 - 交货。虽然传统方法在运输或应用层进行重新排序时,这种方法具有纠缠着与自己的操作重新排序的复杂性的缺点,以及需要重新实现每个协议或应用程序。这里,我们通过提出分组重新排序功能的模块化来解决这些问题作为用于路由覆盖网络的可选,最佳网络层服务。我们经验证明了这种方法的可行性,表明它可以在面对高度多径环境和重型数据包重新排序的情况下实现性能和可靠性甚至使用未修改的TCP。

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