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首页> 外文期刊>IEEE transactions on mobile computing >Spectrum-Aware Anypath Routing in Multi-Hop Cognitive Radio Networks
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Spectrum-Aware Anypath Routing in Multi-Hop Cognitive Radio Networks

机译:多跳认知无线电网络中的频谱感知Anypath路由

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摘要

Cognitive radio networks (CRNs) have been emerging as a promising technique to improve the spectrum efficiency of wireless and mobile networks, which form spectrum clouds to provide services for unlicensed users. As spectrum clouds, the performance of multi-hop CRNs heavily depends on the routing protocol. In this paper, taking the newly proposed Cognitive Capacity Harvesting network as an example, we study the routing problem in multi-hop CRNs and propose a spectrum-aware anypath routing (SAAR) scheme with consideration of both the salient spectrum uncertainty feature of CRNs and the unreliable transmission characteristics of wireless medium. A new cognitive anypath routing metric is designed based on channel and link statistics to accurately estimate and evaluate the quality of an anypath under uncertain spectrum availability. A polynomial-time routing algorithm is also developed to find the best channel and the associated optimal forwarding set and compute the least cost anypath. Extensive simulations show that the proposed protocol SAAR significantly increases packet delivery ratio and reduces end-to-end delay with low communication and computation overhead, which makes it suitable and scalable to be used in multi-hop CRNs.
机译:认知无线电网络(CRN)已经成为提高无线和移动网络频谱效率的一种有前途的技术,这些技术形成了频谱云,为无执照的用户提供服务。作为频谱云,多跳CRN的性能在很大程度上取决于路由协议。本文以新近提出的认知能力收集网络为例,研究多跳CRN中的路由问题,同时考虑CRN的显着频谱不确定性特征和CRN的显着频谱不确定性特征,提出一种频谱感知的任意路径路由(SAAR)方案。无线媒体的传输特性不可靠。基于信道和链路统计信息,设计了一种新的认知任意路径路由度量,以准确估计和评估不确定频谱可用性下任意路径的质量。还开发了多项式时间路由算法,以找到最佳信道和关联的最佳转发集,并计算成本最低的任意路径。大量的仿真表明,所提出的协议SAAR以低通信和计算开销显着提高了数据包的传输率,并减少了端到端延迟,这使其适合并可扩展用于多跳CRN。

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