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Common control channel design for cognitive radio wireless ad hoc networks using adaptive frequency hopping

机译:使用自适应跳频的认知无线电无线自组织网络的公共控制信道设计

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摘要

Cognitive radio (CR) technology enables the opportunistic use of the portions of the licensed spectrum by the CR users, while ensuring low interference to the primary user (PU) activity in the licensed bands. The spectrum is sensed locally by the CR users, and a specific channel that is acceptable to both the end nodes of the communication link is chosen. However, this necessitates a common cohtrol channel (CCC) for exchanging the sensing information and reserving the channel before actual data transfer. In this paper, a common control channel design for CR ad hoc networks is proposed, called as adaptive multiple rendezvous control channel (AMRCC) based on frequency hopping. Our scheme is scalable, and allows continuous connectivity between the CR users under dynamic PU activity. The contribution made in this paper is threefold: (ⅰ) a frequency hopping scheme is proposed that allows altering the hopping sequence based on the PU activity in the channels, (ⅱ) a simple and low-overhead procedure is developed to aid new node-join and leave events, and (ⅲ) a slot duration optimization is given that avoids a significant performance degradation with the number of available channels. Performance evaluation proves that our solution achieves better performance than the other classic CCC solutions in terms of time to rendezvous (TTR) and the resulting throughput, specifically in CR ad hoc networks.
机译:认知无线电(CR)技术使CR用户可以机会使用许可频谱的一部分,同时确保对许可频段中的主要用户(PU)活动的干扰较小。频谱由CR用户本地感知,并选择通信链路的两个端节点都可接受的特定信道。然而,这需要用于在实际数据传输之前交换感测信息并保留该信道的公共汽油信道(CCC)。本文提出了一种用于CR ad hoc网络的通用控制信道设计,称为基于跳频的自适应多集合点控制信道(AMRCC)。我们的方案是可扩展的,并允许动态PU活动下CR用户之间的连续连接。本文的贡献是三方面的:(ⅰ)提出了一种跳频方案,该方案允许基于信道中的PU活动来更改跳频序列,(ⅱ)开发了一种简单且开销较低的程序来帮助新节点-加入和离开事件,以及(ⅲ)提供了时隙持续时间优化,可以避免由于可用通道数而导致的性能显着下降。性能评估证明,我们的解决方案在集合时间(TTR)和所产生的吞吐量方面,特别是在CR ad hoc网络中,比其他经典的CCC解决方案具有更好的性能。

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