Traffic adaptive channel utilization based medium access control protocol for cognitive radio network

Sumaya Kazary, Md. Tareq Mahmud, Md. Obaidur Rahman
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引用次数: 1

Abstract

The increasing rate of wireless devices pressurizes the researchers to think about an opportunistic bandwidth utilization of the licensed bands. As a result, the concept Cognitive Radio Network (CRN) having Primary user (PU) and Secondary user (SU) has been evolved. However, the challenges of CRN basically includes successful channel rendezvous. As of now, most of the protocol either used common control channel or synchronization approach, where bottleneck and unavailability of control channel might occur due to presence of PU. Furthermore, once channel rendezvous is successful traffic adaptive channel utilization in medium access design is missing in existing works. Therefore, motivating with the mentioned limitation, we have proposed a Traffic Adaptive Channel Utilization based Medium Access Control (TACU-MAC) for CRN. The protocol targets to make successful and fast channel rendezvous as well as ensure channel utilization rate in data transmission. Extensive analysis and simulation have demonstrated that traffic adaptability of the proposed work has ensured better rendezvous success rate, lower rendezvous delay, higher throughput and transmission success rate.
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基于业务量自适应信道利用的认知无线网络介质访问控制协议
无线设备的增长速度迫使研究人员考虑对许可频段的机会性带宽利用。因此,有主用户(PU)和从用户(SU)的认知无线网络(CRN)概念得到了发展。然而,CRN的挑战主要包括成功的信道交会。到目前为止,大多数协议要么使用公共控制通道,要么使用同步方法,在这种情况下,由于存在PU,可能会出现控制通道的瓶颈和不可用性。此外,一旦信道交会成功,现有的媒介接入设计中缺少流量自适应信道利用。因此,考虑到上述限制,我们提出了一种基于业务量自适应信道利用的CRN介质访问控制(TACU-MAC)。该协议的目标是实现快速、成功的信道交会,保证数据传输中的信道利用率。大量的分析和仿真表明,所提工作的业务适应性保证了更高的交会成功率、更低的交会延迟、更高的吞吐量和传输成功率。
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