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Design of OMC-MAC: An Opportunistic Multi-Channel MAC with QoS Provisioning for Distributed Cognitive Radio Networks

机译:OMC-MAC的设计:分布式认知无线电网络中具有QoS设置的机会多信道MAC

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摘要

Dynamic resource availability and lack of central control unit offer many challenges while designing medium access control (MAC) protocol for a distributed cognitive radio network (DCRN). In this paper, we propose a novel MAC design for DCRN which provides an efficient approach to address quality of service (QoS) requirements of delay sensitive applications by defining higher priority to such applications during channel reservation. It also combats other major challenges such as efficient spectrum utilization, multi-channel hidden terminal problem (MHTP) and collision with primary user (PU) due to sensing error at SU. We develop an analytical framework to study the performance of the proposed protocol. We then compare the performance of proposed protocol with those of two existing protocols. Comparison results show that proposed MAC outperforms the existing protocols by providing better throughput and reducing DCRN users' collision probability with PUs in presence of sensing error. The results achieved from the analytical model and validated by simulations show that our simple yet efficient design identifies and fulfils the QoS requirements of delay sensitive applications, achieves excellent spectrum utilization, shows superb robustness in presence of sensing errors and handles MHTP effectively.
机译:在设计用于分布式认知无线电网络(DCRN)的媒体访问控制(MAC)协议时,动态资源可用性和缺少中央控制单元提出了许多挑战。在本文中,我们提出了一种针对DCRN的新颖的MAC设计,它通过在信道预留期间为此类应用定义更高的优先级,从而为满足此类需求提供了一种有效的方法来满足延迟敏感应用的服务质量(QoS)要求。它还可以应对其他主要挑战,例如有效的频谱利用,多通道隐藏终端问题(MHTP)和由于SU处的检测错误而与主要用户(PU)发生冲突。我们开发了一个分析框架来研究所提出协议的性能。然后,我们将提议的协议的性能与两个现有协议的性能进行比较。比较结果表明,所提出的MAC通过提供更好的吞吐量并降低DCRN用户与PU发生传感错误时的冲突概率,从而优于现有协议。从分析模型获得并通过仿真验证的结果表明,我们简单而有效的设计可以识别并满足时延敏感应用的QoS要求,具有出色的频谱利用率,在存在检测错误的情况下显示出超强的鲁棒性,并能有效处理MHTP。

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