一种用于多跳无线局域网的标签交换分组转发体系结构

A. Acharya, Archan Misra, Sorav Bansal
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引用次数: 80

摘要

有线网络中的路由器通常需要多个网络接口来充当路由器或转发节点。另一方面,在自组织多跳无线网络中,任何具有无线网络接口卡的节点都可以充当路由器或转发节点,因为它可以从邻近节点接收数据包,根据数据包的目的IP地址进行路由查找,然后使用相同的无线接口将数据包传输到另一个相邻节点。本文研究了一种基于固定长度标签(而不是IP地址)的组合介质访问和下一跳地址查找,它允许整个数据包转发操作在无线网卡内执行,而无需主机协议栈的干预。到目前为止,媒介访问方案,如IEEE 802.11,已经被隐式地设计为接收或发送数据包,但不是用于转发操作,即从上游节点接收数据包,然后立即将数据包作为原子通道访问操作发送到下游节点。提出了一种用于多跳无线网络数据包转发的MAC协议。提议的协议建立在IEEE 802.11 DCF MAC上,使用RTS/CTS,并在控制数据包(RTS/CTS)中使用MPLS标签,允许转发节点在争夺通道时确定下一跳节点。通过仿真比较了该协议与802.11 DCF MAC协议的吞吐量。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A label-switching packet forwarding architecture for multi-hop wireless LANs
A router in wired network typically requires multiple network interfaces to act as a router or a forwarding node. In an ad-hoc multi-hop wireless network on the other hand, any node with a wireless network interface card can operate as a router or a forwarding node, since it can receive a packet from a neighboring node, do a route lookup based on the packet's destination IP address, and then transmit the packet to another neighboring node using the same wireless interface. This paper investigates a combined medium access and next-hop address lookup based on fixed length labels (instead of IP addresses), which allows the entire packet forwarding operation to be executed within the wireless NIC without the intervention of the host protocol stack. Medium access schemes to date, such as IEEE 802.11, have been designed implicitly for either receiving or transmitting a packet, but not for a forwarding operation, i.e. receiving a packet from an upstream node and then immediately transmitting the packet to a downstream node as an atomic channel access operation. This paper proposes a MAC protocol for packet forwarding in multi-hop wireless networks. The proposed protocol builds on the IEEE 802.11 DCF MAC using RTS/CTS and uses MPLS like labels in the control packets (RTS/CTS) to allow the forwarding node to determine the next hop node while contending for the channel. The throughput of this protocol is compared with 802.11 DCF MAC through simulation.
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