面向并发通信的认知无线网络网格路由

N. Dutta, Z. Pólkowski, C. Savulescu
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引用次数: 1

摘要

认知无线网络(Cognitive Radio Network, CRN)利用许可频带中的频谱漏洞,在许可用户空闲时允许同址的认知用户之间进行通信。在这种机会性通信中,认知用户需要在许可用户变得活跃时腾出通道。大多数情况下,这种突然终止认知设备正在进行的会话会导致不可接受的开销并降低服务质量。因此,本文提出了一种新的路由协议,强调认知用户的并发通信,而不是机会通信。在并发通信中,通过控制认知设备的传输功率使其不干扰已许可用户的正在进行的对话,允许认知设备甚至在许可用户活动存在的情况下进行通信。该算法基于完整的位置信息,假设每个认知设备都可以检测到自己和网络中任何其他认知设备的位置信息。所有的认知设备被安排到网格单元中,每个网格根据一些预先定义的标准选择一个网格头(gH),网格头负责路由。此外,为了减少路由开销和更快地建立路由,协议还提出了基于目的地位置的路由区域和转发区域。将该协议的仿真结果与CAODV协议进行了比较,发现该协议在分组传送率和路由开销方面都有显著提高。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Grid based routing in cognitive radio networks for concurrent communication
Cognitive Radio Network (CRN) exploits the spectrum hole in licensed bands by allowing co located cognitive users to communicate among themselves when licensed users are idle. In such opportunistic communication, the cognitive users need to vacate the channel as and when the licensed user becomes active. Most of the time such sudden termination of ongoing sessions of cognitive devices leads to unacceptable overhead and degrades service quality. So, in this paper a new routing protocol is proposed which emphasizes on concurrent communication of cognitive users rather than opportunistic communication. In concurrent communication cognitive devices are allowed to communicate even in the presence of licensed users activity by controlling the transmission power of cognitive devices such that they do not interfere with the ongoing conversation of licensed users. The algorithm is based on the full location information with the assumption that each of the cognitive device can detect the location information of its own and any other cognitive device in the network. All cognitive devices are arranged into grid cells and every grid selects a grid Head (gH) based on some predefined criteria who takes care of routing. Further, the protocol also suggests a routing zone and forwarding region based on the location of the destination in order to reduce routing overhead and faster route establishment. The simulated results of the protocol is compared with CAODV protocol and observed an improvement in packet delivery ratio and routing overhead.
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