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A QoS-based Rate Adaptation Strategy for IEEE a/b/g PHY Schemes using IEEE 802.11e in Ad-hoc Networks

机译:Ad-hoc网络中使用IEEE 802.11e的IEEE A / B / G PHY方案的基于QoS的速率适应策略

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A dynamic rate selection technique is presented as a way to enhance the performance of ad-hoc networks. In particular, for IEEE 802.11-based networks using rate adaptation, the PHY scheme can vary and each IEEE 802.11 standard has different channel coding and modulations. The work proposes that the transmission rate should be chosen in an adaptive manner since the wireless channel condition varies over time due to such factors as channel characteristics, the PHY scheme selected, time-varying interference, and the priority of services (QoS demands) from MAC/PHY layers. Excessive high speed transmission can result in increased Frame error Rate (FER) over the link resulting in reduced throughput. This paper considers a new approach to alleviating FER by dynamically adjusting the transmission rate according to the Quality of Service (QoS) requirements from applications. Results are presented that show how this scheme achieves much higher throughput and lower end-to-end delay compared to the current IEEE 802.11 a/b/g ad-hoc networks. The results also show that the stability of the system is improved when operating under the QoS mechanisms supported in IEEE 802.11e MAC protocol.
机译:呈现动态速率选择技术作为增强ad-hoc网络性能的方法。特别地,对于使用速率适应的基于IEEE 802.11的网络,PHY方案可以变化,并且每个IEEE 802.11标准具有不同的信道编码和调制。该工作提出了应以自适应方式选择传输速率,因为由于这种因素随着频道特征,所选择的PHY方案,时间变化干扰以及服务的优先级(QoS要求),无线信道条件随着时间的推移而变化。 MAC / PHY层。过高的高速传输可能导致链路上的帧误差率增加(FER)导致吞吐量降低。本文考虑通过根据应用的服务质量(QoS)要求动态调整传输速率来缓解FER的新方法。提出了结果,该方案与当前IEEE 802.11 A / B / G ad-hoc网络相比,该方案如何实现更高的吞吐量和降低端到端延迟。结果还表明,在IEEE 802.11e MAC协议中支持的QoS机制下操作时,系统的稳定性得到改善。

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