利用传播图提供及时、可靠、经济的互联网传输服务

Amy Babay, Emily Wagner, M. Dinitz, Y. Amir
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引用次数: 20

摘要

诸如远程操作和远程机器人手术等新兴应用要求通信既及时又可靠,但是Internet本身只支持通信,要么是完全可靠的,没有时效性保证(例如TCP),要么是及时的,尽最大努力的可靠性(例如UDP)。我们提供了一种覆盖传输服务,可以提供高度可靠的通信,同时满足严格的时效性保证(例如,在美国的往返延迟为130毫秒)。为了使路由方案能够支持必要的时效性和可靠性,我们引入了传播图,为指定路由方案提供了统一的框架,范围从单一路径到多个不相交路径,再到任意图。我们对现实世界的网络数据进行了广泛的分析,发现使用两条不相交路径的路由方法在大多数情况下表现良好,而两条不相交路径表现不佳的情况通常涉及源或目标周围的问题。在此基础上,我们开发了一种及时的基于传播图的路由方法,可以在网络的问题区域中添加目标冗余。这种方法可以弥补传统单路径方法和最优方案(但代价高昂)之间99%以上的性能差距,而两条动态不相交路径可以弥补大约70%的差距,两条静态不相交路径可以弥补大约45%的差距。这种性能改进是在两个不相交路径上的成本增加约2%的情况下获得的。
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Timely, Reliable, and Cost-Effective Internet Transport Service Using Dissemination Graphs
Emerging applications such as remote manipulation and remote robotic surgery require communication that is both timely and reliable, but the Internet natively supports only communication that is either completely reliable with no timeliness guarantees (e.g. TCP) or timely with best-effort reliability (e.g. UDP). We present an overlay transport service that can provide highly reliable communication while meeting stringent timeliness guarantees (e.g. 130ms round-trip latency across the US) over the Internet. To enable routing schemes that can support the necessary timeliness and reliability, we introduce dissemination graphs, providing a unified framework for specifying routing schemes ranging from a single path, to multiple disjoint paths, to arbitrary graphs. We conduct an extensive analysis of real-world network data, finding that a routing approach using two disjoint paths performs well in most cases, and that cases where two disjoint paths do not perform well typically involve problems around a source or destination. Based on this analysis, we develop a timely dissemination-graph-based routing method that can add targeted redundancy in problematic areas of the network. This approach can cover over 99% of the performance gap between a traditional single-path approach and an optimal (but prohibitively expensive) scheme, while two dynamic disjoint paths cover about 70% of this gap, and two static disjoint paths cover about 45%. This performance improvement is obtained at a cost increase of about 2% over two disjoint paths.
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