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A novel network coded parallel transmission framework for high-speed Ethernet

机译:一种用于高速以太网的新型网络编码并行传输框架

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摘要

Parallel transmission, as defined in high-speed Ethernet standards, enables to use less expensive optoelectronics and offers backwards compatibility with legacy Optical Transport Network (OTN) infrastructure. However, optimal parallel transmission does not scale to large networks, as it requires computationally expensive optimal multipath routing algorithms to minimize differential delay, and thus the required buffer size to ensure frame synchronization. In this paper, we propose a novel parallel transmission framework for high-speed Ethernet, which we refer to as network coded parallel transmission, capable of effective buffer management and frame synchronization without the need for complex multipath algorithms. We show that using network coding can reduce the delay caused by packet reordering at the receiver, thus requiring a smaller overall buffer size, while improving the network throughput. We design the framework in full compliance with high-speed Ethernet standards specified in IEEE802.3ba and present detailed schemes including encoding, data structure of coded parallel transmission, buffer management and decoding at the receiver side. The proposed network coded parallel transmission framework is simple to implement and presents a potential major breakthrough in the system design of future high-speed Ethernet.
机译:高速以太网标准中定义的并行传输可以使用便宜的光电器件,并与传统的光传输网络(OTN)基础结构向后兼容。但是,最佳并行传输无法扩展到大型网络,因为它需要计算上昂贵的最佳多路径路由算法来最大程度地减少差分延迟,因此需要确保缓冲区大小以确保帧同步。在本文中,我们提出了一种新颖的高速以太网并行传输框架,我们将其称为网络编码并行传输,它能够有效地进行缓冲区管理和帧同步,而无需复杂的多径算法。我们表明,使用网络编码可以减少由接收器处的数据包重新排序引起的延迟,因此需要较小的整体缓冲区大小,同时可以提高网络吞吐量。我们设计的框架完全符合IEEE802.3ba中指定的高速以太网标准,并提出了详细的方案,包括编码,编码并行传输的数据结构,接收方的缓冲区管理和解码。所提出的网络编码并行传输框架易于实现,并且在未来高速以太网的系统设计中提出了潜在的重大突破。

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