标题: | 无线感测网路中认知式择路协定的跨层设计 Cross-Layer Cognitive Routing in Wireless Sensor Networks |
作者: | 许裕彬 方凯田 电信工程研究所 |
关键字: | 感知无线;跨层设计;择路;CSMA/CA系统;无线感测网路;Cognitive Radio;Cross-Layer Design;Routing;CSMA/CA Scheme;Wireless Sensor Networks |
公开日期: | 2006 |
摘要: | 感知无线(cognitive radio,CR)的概念在于强调频段的有效利用。在无线感测网路的范畴下,本论文提出了一个“以网路配置向量来协助的认知式择路协定”(CNAR),根据跨层的概念达到更有效率地使用有限的资源。其中,网路配置向量(NAV)被用来估测频道的状态,结果再应用于封包路径的选择。此外,“认知式路径转换”及“降低连结点的区域性路径修补”亦被提出来,进一步地提升CNAR的效能。最后,一个理论上的研讨及数个模拟结果将用做性能的评估与比较。其结果显示出,在不大量耗费控制封包的情况下,所提出的CNAR比现今许多类似的择路协定表现更佳,特别是在频道拥塞的情况下,更能突显出CNAR的优势。 Cognitive Radio (CR) is a paradigm which aims at improving the spectrum efficiency by means of the prior information and the ability to adapt. In this thesis, a Cognitive NAV-Assisted Routing (CNAR) algorithm is proposed to effectively make use of the limited channel resources with a cross-layer approach. The existing NAV vectors obtained from the RTS/CTS packets are utilized for the estimation of the channel status around a sensor node. The routing path is selected based on the channel-free probability along the route for the transmission of data packets. Moreover, the cognitive path-switching scheme and the Reduced Hops Local Repair (RHLR) mechanism further enhance the routing performance of the proposed CNAR algorithm. The effectiveness of the proposed CNAR protocol is evaluated via both the analytical study and the simulation results. Without consuming excessive power for each sensor node, the CNAR algorithm can achieve better performance comparing with other existing schemes, especially under the scenarios with the channel congestion. |
URI: | http://140.113.39.130/cdrfb3/record/nctu/#GT009413598 http://hdl.handle.net/11536/80859 |
显示于类别: | Thesis |
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