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Joint rate, channel and route selection for cognitive radio ad hoc networks

机译:认知无线电自组织网络的联合速率,信道和路由选择

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It is a difficult but fundamental goal to fully utilize various resources to deliver data as efficiently as possible in wireless networks. In CRAHNs, it becomes more challenging due to uncertain primary users' activities, time- and location-varying channels, and arbitrary traffic arrivals with unpredictable rate demand. In this paper, we propose a Joint Rate, Channel and Route Selection (JRCRS) approach to optimize the network resource utility in multi-hop, multi-channel CRAHNs, with the objective of maximizing social welfare. Our JRCRS jointly optimizes the data transmission rate adaptive to network condition, assigns interference-free channels and selects a route when a new flow arrives or a primary user activates. The routing metric in our JRCRS considers the relay workload, the distance between the relay and the destination node, and co-channel interference to primary and secondary users. Simulation results demonstrate that our JRCRS outperforms the most related solutions in terms of social welfare, average throughput, network stability and end-to-end delay.
机译:充分利用各种资源在无线网络中尽可能高效地传输数据是一个困难但基本的目标。在CRAHN中,由于不确定的主要用户活动,时变和位置变化的频道以及任意流量到达而速率需求无法预测,这变得更具挑战性。在本文中,我们提出了一种联合速率,信道和路由选择(JRCRS)方法,以优化多跳,多信道CRAHN中的网络资源效用,目的是最大化社会福利。我们的JRCRS联合优化了适应网络条件的数据传输速率,分配了无干扰的信道,并在新的数据流到达或主要用户激活时选择了一条路线。 JRCRS中的路由度量标准考虑了中继的工作量,中继与目标节点之间的距离以及对主要用户和次要用户的同信道干扰。仿真结果表明,在社会福利,平均吞吐量,网络稳定性和端到端延迟方面,我们的JRCRS优于最相关的解决方案。

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