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A MAC-Layer QoS Provisioning Protocol for Cognitive Radio Networks

机译:认知无线电网络的MAC层QoS设置协议

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Due to the proliferation of diverse network devices with multimedia capabilities, there is an increasing need for Quality of Service (QoS) provisioning in wireless networks. The MAC layer protocol with enhanced distributed channel access (EDCA) in the IEEE 802.11-2007 is able to provide differentiated QoS for different traffic types in wireless networks through varying the Arbitration Inter-Frame Spaces (AIFS) and contention window sizes. However, the performance of high priority traffic can be seriously degraded in the presence of strong noise over the wireless channels. Schemes utilizing adaptive modulation and coding (AMC) technique have also been proposed for the provisioning of QoS. They can provide limited protection in the presence of noise but are ineffective in a high noise scenario. Although multiple non-overlapped channels exist in the 2.4 and 5 GHz spectrum, most IEEE 802.11-based multi-hop ad hoc networks today use only a single channel at anytime. As a result, these networks cannot fully exploit the aggregate bandwidth available in the radio spectrum provisioned by the standards. By identifying vacant channels through the use of cognitive radios technique, the noise problem can be mitigated by distributing network traffic across multiple vacant channels to reduce the node density per transmission channel. In this paper, we propose the MAC-Layer QoS Provisioning Protocol (MQPP) for 802.11-based cognitive radio networks (CRNs) which combines adaptive modulation and coding with dynamic spectrum access. Simulation results demonstrate that MQPP can achieve better performance in terms of lower delay and higher throughput.
机译:由于具有多媒体功能的各种网络设备的激增,对无线网络中服务质量(QoS)设置的需求日益增长。通过更改仲裁帧间空间(AIFS)和争用窗口大小,IEEE 802.11-2007中具有增强的分布式通道访问(EDCA)的MAC层协议能够为无线网络中的不同流量类型提供差异化​​的QoS。但是,在无线信道上存在强噪声的情况下,高优先级流量的性能可能会严重降低。还已经提出了利用自适应调制和编码(AMC)技术的方案来提供QoS。它们在存在噪声的情况下只能提供有限的保护,但在高噪声情况下无效。尽管在2.4 GHz和5 GHz频谱中存在多个不重叠的信道,但是当今大多数基于IEEE 802.11的多跳自组织网络在任何时间都仅使用一个信道。结果,这些网络无法充分利用标准规定的无线电频谱中可用的总带宽。通过使用认知无线电技术识别空闲信道,可以通过在多个空闲信道之间分配网络流量以减少每个传输信道的节点密度来缓解噪声问题。在本文中,我们为基于802.11的认知无线电网络(CRN)提出了MAC层QoS协议(MQPP),该协议将自适应调制和编码与动态频谱访问相结合。仿真结果表明,MQPP在较低延迟和较高吞吐量方面可以实现更好的性能。

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