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Analysis of contact graph routing enhancements for DTN space communications

机译:DTN空间通信的联系图路由增强功能分析

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In this paper, we analyze the performance of two contact graph routing (CGR) enhancements, namely, CGR with earliest transmission opportunity (CGR-ETO) and overbooking management. CGR-ETO aims to improve the accuracy of predicted bundle delivery time by exploiting existing information on queueing delay, in routing decisions. Overbooking management aims to proactively handle contact oversubscription, which occurs when high-priority bundles are forwarded to a contact that is already fully subscribed by lower-priority bundles. These two enhancements have been recently included in the official CGR version as part of the Interplanetary Overlay Network delay-tolerant/disruption-tolerant networking implementation maintained by the National Aeronautics and Space Administration. In parallel to the comparative evaluation of the enhancements against the original CGR, we introduce an experimental version of CGR-ETO that exploits information on locally routed data to calculate queueing delays in all hops through the path to destination, rather than in the first hop only. We evaluate the aforementioned enhancements in a set of emulation experiments conducted on a GNU/Linux testbed and compare official and experimental versions of CGR. Results show that the two enhancements are complementary and can significantly improve routing decisions compared with older versions of CGR, particularly in the presence of parallel routes and traffic of different priorities. These advantages are further extended when the experimental version of ETO is considered.
机译:在本文中,我们分析了两种联系图路由(CGR)增强功能的性能,即具有最早传输机会的CGR(CGR-ETO)和超额预订管理。 CGR-ETO旨在通过在路由决策中利用有关排队延迟的现有信息来提高预测的捆绑包交付时间的准确性。超额预订管理旨在主动处理联系人超额预订,这种情况在高优先级捆绑包转发到已经被低优先级捆绑包完全预订的联系人时发生。这两个增强功能最近已作为国家航空和航天局维护的星际覆盖网络延迟容忍/干扰容忍网络实施的一部分纳入官方CGR版本。在对原始CGR的增强功能进行比较评估的同时,我们引入了CGR-ETO的实验版本,该版本利用有关本地路由数据的信息来计算到达目标路径的所有跃点中的排队延迟,而不是仅在第一跃点中。我们在GNU / Linux测试平台上进行的一组仿真实验中评估了上述增强功能,并比较了CGR的正式版和实验版。结果表明,与旧版本的CGR相比,这两项增强是相辅相成的,并且可以显着改善路由决策,特别是在存在并行路由和具有不同优先级的流量的情况下。当考虑使用ETO的实验版本时,这些优势会进一步扩展。

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