Delay-tolerant networks with network coding: How well can we simulate real devices?

Y. Chen, X. Liu, W. Taylor, Jason H. Moore
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引用次数: 2

Abstract

Delay-tolerant networking effectively extends the network connectivity in the time domain, and endows communications devices with enhanced data transfer capabilities. Network coding on the other hand enables us to approach the information capacity of networks by allowing intermediate nodes to process data en route. Both of these were major principal breakthroughs in mobile and wireless communications in the past decade or so. As reported in this article, we are interested in how network coding battles such challenged networks as DTN from an experimental perspective. We conducted tests with both real smart mobile devices and computer simulation and found conditions where their results match. This would give us confidence of using computer simulation to study larger delay-tolerant networks with and without network coding at a much manageable cost.
具有网络编码的延迟容忍网络:我们能多好地模拟真实设备?
容延迟网络有效地扩展了网络在时域上的连通性,增强了通信设备的数据传输能力。另一方面,网络编码使我们能够通过允许中间节点在途中处理数据来接近网络的信息容量。这两项技术都是过去十年左右移动和无线通信领域的重大突破。正如本文所报道的那样,我们对网络编码战如何从实验的角度挑战DTN等网络感兴趣。我们对真实的智能移动设备和计算机模拟进行了测试,并找到了结果相匹配的条件。这将使我们有信心使用计算机模拟来研究更大的延迟容忍网络,并以更可控的成本进行网络编码和不编码。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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