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首页> 外文期刊>International Journal on Communications Antenna and Propagation >A Novel Reduced Sensing Time Routing Protocol in Cognitive Radio Networks
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A Novel Reduced Sensing Time Routing Protocol in Cognitive Radio Networks

机译:认知无线电网络中一种新颖的减少感知时间的路由协议

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To avoid interference with primary users' transmission in cognitive radio networks, the secondary users must perform a periodic spectrum sensing. The secondary users may cooperate with each other for sensing, in order to enhance the accuracy and reduce the overall spectrum sensing time. Spectrum sensing is also needed in other cognitive radio functions, such as in routing. Specifically, a cognitive radio node will not be able to route a packet to another cognitive radio node except if the channel is available on both nodes, where channels availability is determined by sensing. In this paper, a novel cooperative spectrum sensing protocol in ad-hoc cognitive radio networks is proposed in order to enhance routing performance. This approach is called Reduced Sensing Time Routing Protocol, in which a multi-hop path is found from a source to a destination. The route is composed of the intermediate cognitive radio nodes and the channel to be used at each hop. During the route setup phase, each intermediate node along the investigated path may select a neighbor node to perform channel sensing on its behalf, and this saved sensing time can be utilized to prolong the transmission time. As a result, the total end-to-end delay over the selected route is reduced. Simulation results show about 10% reduction in the overall average end-to-end delay as compared to conventional approach which assumes no cooperation exists in sensing between cognitive radio nodes. (
机译:为了避免干扰主要用户在认知无线电网络中的传输,次要用户必须执行定期频谱感测。二级用户可以彼此协作进行感测,以提高准确性并减少总体频谱感测时间。其他认知无线电功能(例如,路由选择)中也需要频谱感测。具体而言,除非信道在两个节点上均可用,否则认知无线电节点将不能将分组路由到另一个认知无线电节点,在该两个节点上,信道的可用性是通过感测来确定的。为了提高路由性能,本文提出了一种新的自组织认知无线电网络中的协作频谱感知协议。这种方法称为“减少传感时间路由协议”,其中找到了从源到目的地的多跳路径。该路由由中间认知无线电节点和每个跃点使用的信道组成。在路由设置阶段,沿调查路径的每个中间节点可以选择一个邻居节点来代表其执行信道感测,并且可以利用此节省的感测时间来延长传输时间。结果,减少了所选路由上的总的端到端延迟。仿真结果表明,与传统方法相比,传统平均方法的总平均端到端延迟减少了约10%,而传统方法假定认知无线电节点之间的感应不存在合作。 (

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