面向自组网的跨层拥塞感知多速率多路径路由协议

Dr. Mahadev A. Gawas, L. Gudino, K. Anupama
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引用次数: 6

摘要

实现802.11b标准的现代无线设备利用多种传输速率来适应各种信道条件。提出了许多速率自适应算法,利用多数据速率,主要是根据当前信道质量。大多数算法没有考虑网络周围的拥塞和适当的行列式来识别它。在多速率Ad hoc网络中,由于链路速率不匹配,导致节点接口队列过载。从而造成拥塞,导致丢包,进一步降低有效吞吐量。本文提出了一种基于节点排队负载和链路状态的跨层QoS感知多速率路由协议(CQMR)。CQMR侧重于物理层、MAC层和网络层之间的跨层交互,以利用802.11b的这些多速率支持。CQMR算法选择具有有效数据速率且通过较少拥塞网络的最优路径,与现有802.11实现兼容。我们已经在NS-2模拟器中实现了CQMR,并对网络多样性进行了广泛的仿真研究。我们的分析表明,CQMR协议在数据包传输率和吞吐量方面显著提高了网络性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Cross layer congestion aware multi rate multi path routing protocol for ad hoc network
Modern wireless devices, which implement the 802.11b standard, utilizes multiple transmission rates in order to accommodate a varied range of channel conditions. Many rate adaptation algorithms proposed, utilizes the multi data rate, primarily according to the current channel quality. Most algorithms do not consider congestion around the network and proper determinant to identify it. In multi rate Ad hoc network, due to mismatched link rate, the node interface queues get overloaded. Thus causing congestion, which consequently result in packet loss, further reducing effective throughput. In this paper, we propose a novel Cross layer QoS aware Multi Rate routing protocol (CQMR) based on nodes queuing load and link state. CQMR focuses on cross-layer interactions between PHY, MAC and Network layer to utilize these multi-rate supports from 802.11b. CQMR algorithm chooses the optimal path with effective data rate and through a less congested network, which is compatible with existing 802.11 implementations. We have implemented CQMR in the NS-2 simulator and conducted extensive simulation studies over network diversity. Our analysis shows that CQMR protocol significantly increases the network performance in the packet delivery ratio and throughput.
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