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Network Coding Based Mesh-Under Routing In 6LoWPAN with High End-to-End Packet Delivery Rate

机译:基于网络编码的网格路由在6LOWPAN中的高端 - 端到端分组交付率

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In 6LoWPAN protocol, in order to deliver an IPv6 packet in the IEEE 802.15.4 based wireless personal area network (WPAN), an IPv6 packet is divided into multiple fragments, with each being incorporated in an IEEE 802.15.4 MAC frame, such that the size of each frame is no more than the Maximum Transmission Unit (MTU) of the frame. Usually, retransmission is used to reliably deliver an IPv6 packet to the destination node in the WPAN with lossy links. To improve the end-to-end packet delivery rate (PDR) of the mesh-under routing (MUR) presented in the 6LoWPAN protocol, we present a network coding based mesh-under routing (NC-MUR) scheme. The main idea underlying NC-MUR is that, the source node generates an encoded frame in addition to the M non-coded frames derived from the IPv6 packet, and then the M+1 fragments are delivered to the destination so that the destination can recover the IPv6 packet so long as any M fragments among them are received. Theoretical analyses show that NC-MUR outperforms MUR in terms of PDR and energy consumption in the cases where fragment error rate is moderate or high.
机译:在6LOWPAN协议中,为了在基于IEEE 802.15.4的无线个人区域网络(WPAN)中提供IPv6数据包,将IPv6数据包分成多个片段,每个片段包含在IEEE 802.15.4 MAC帧中,使得每个帧的大小不超过帧的最大传输单元(MTU)。通常,重传用于可靠地将IPv6分组可靠地将IPv6数据包与WPAN中的目标节点一起传送到WPAN中。为了提高6LowPAN协议中呈现的网格路由(MUR)的端到端分组输送速率(PDR),我们介绍了一种基于网络编码的网格路由(NC-MUR)方案。基础NC-MUR的主要思想是,除了从IPv6分组导出的M非编码帧之外,源节点还生成编码帧,然后将M + 1片段传送到目的地,以便目的地可以恢复IPv6数据包只要收到其中的任何M片段。理论分析表明,在片段误差率温和或高的情况下,NC-MUS在PDR和能量消耗方面表现出MUR。

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