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ECCO: A Novel End-to-End Congestion Control Scheme in Multi-Hop Cognitive Radio Ad Hoc Networks

机译:ECCO:多跳认知无线电自组织网络中的新型端到端拥塞控制方案

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End-to-end congestion control, aiming to find out how much traffic load offered by the source can be handled by a network, is an essential function of a transport layer protocol. Although various efforts have been made to address the end-to-end congestion control issue in traditional wireless ad hoc networks, these approaches usually lead to excessively long delay for the source node to react to the congestion in cognitive radio (CR) ad hoc network because of the non-uniform channel availability. Thus, the end-to-end throughput suffers significant degradation. In this paper, a novel end-to-end congestion control scheme named ECCO is proposed that considers the unique features in multi-hop CR ad hoc networks, such as spectrum sensing, channel rendezvous, and licensed user activities. The average packet round trip time for multi-hop CR ad hoc networks is derived. In addition, through extensive simulation, it is shown that our proposed novel end-to-end congestion control scheme outperforms the existing congestion control mechanisms in terms of higher end-to-end throughput. To the best of our knowledge, this is the first paper that investigates the end-to-end congestion control issue in multi-hop CR ad hoc networks.
机译:端对端拥塞控制旨在发现网络可以处理源提供的流量负荷,这是传输层协议的基本功能。尽管已经做出各种努力来解决传统无线自组织网络中的端到端拥塞控制问题,但是这些方法通常导致源节点对认知无线电(CR)自组织网络中的拥塞做出反应的时间过长。由于频道可用性不统一。因此,端到端的吞吐量显着下降。在本文中,提出了一种新颖的端到端拥塞控制方案ECCO,该方案考虑了多跳CR ad hoc网络的独特功能,例如频谱感测,信道集合和许可用户活动。得出多跳CR ad hoc网络的平均数据包往返时间。另外,通过广泛的仿真,表明我们提出的新颖的端到端拥塞控制方案在更高的端到端吞吐量方面胜过了现有的拥塞控制机制。据我们所知,这是第一篇研究多跳CR ad hoc网络中端到端拥塞控制问题的论文。

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