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Channel-Hopping-Based Communication Rendezvous in Cognitive Radio Networks

机译:认知无线电网络中基于信道跳变的通信集合点

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Cognitive radio (CR) networks have an ample but dynamic amount of spectrum for communications. Communication rendezvous in CR networks is the process of establishing a control channel between radios before they can communicate. Designing a communication rendezvous protocol that can take advantage of all the available spectrum at the same time is of great importance, because it alleviates load on control channels, and thus further reduces probability of collisions. In this paper, we present ETCH, efficient channel-hopping-based MAC-layer protocols for communication rendezvous in CR networks. Compared to the existing solutions, ETCH fully exploits spectrum diversity in communication rendezvous by allowing all the rendezvous channels to be utilized at the same time. We propose two protocols, SYNC-ETCH, which is a synchronous protocol assuming CR nodes can synchronize their channel hopping processes, and ASYNC-ETCH, which is an asynchronous protocol not relying on global clock synchronization. Our theoretical analysis and ns-2-based evaluation show that ETCH achieves better performances of time-to-rendezvous and throughput than the existing work.
机译:认知无线电(CR)网络具有充足但动态的通信频谱。 CR网络中的通信集合点是在无线电之间进行通信之前在无线电之间建立控制信道的过程。设计一种可以同时利用所有可用频谱的通信集合协议非常重要,因为它可以减轻控制信道上的负载,从而进一步降低冲突的可能性。在本文中,我们提出了ETCH,一种用于CR网络中通信集合点的,基于高效信道跳变的MAC层协议。与现有解决方案相比,ETCH通过允许同时使用所有集合信道来充分利用通信集合中的频谱分集。我们提出两种协议,SYNC-ETCH是一种异步协议,假定CR节点可以同步其信道跳频过程;而ASYNC-ETCH是一种异步协议,它不依赖于全局时钟同步。我们的理论分析和基于ns-2的评估表明,与现有工作相比,ETCH在交会时间和吞吐量方面具有更好的性能。

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