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首页> 外文期刊>Wireless personal communications: An Internaional Journal >Outage Minimized Joint Power and Channel Allocation in Multihop Cognitive Radio Networks: A Lifetime-Centric Approach
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Outage Minimized Joint Power and Channel Allocation in Multihop Cognitive Radio Networks: A Lifetime-Centric Approach

机译:在多跳认知无线电网络中将中断最小化的联合功率和信道分配:以生命周期为中心的方法

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This paper looks for an optimal solution to address joint power and channel allocation problem in a multihop cognitive radio network (CRN). The overall goal is to minimize the end-to-end outage probability of the CRN while meeting simultaneously total transmission power and interference constraints to primary user (PU). Two different forms of interference model, with and without considering spectral distance between PU and secondary user (SU) channels, are considered where the former again uses uniform and triangular probability density functions for determining interference to PU. The problem has been solved using standard technique of solving convex optimization problem (for power allocation) and weighted bipartite matching (for channel allocation). Furthermore, the proposed solution assumes that transmitting nodes are energy constrained. Hence, network lifetime improvement is an additional design challenge. Simulation results show that the proposed scheme not only minimizes outage probability better compared to existing power allocation strategies but also results in savings of SUs power consumption, which helps to extend network lifetime significantly.
机译:本文寻求解决多跳认知无线电网络(CRN)中联合功率和信道分配问题的最佳解决方案。总体目标是最大程度地降低CRN的端到端中断概率,同时满足总传输功率和对主要用户(PU)的干扰约束。考虑了两种不同形式的干扰模型,考虑和不考虑PU与次要用户(SU)信道之间的频谱距离,其中前者再次使用均匀和三角概率密度函数来确定对PU的干扰。已经使用解决凸优化问题(用于功率分配)和加权二分匹配(用于信道分配)的标准技术解决了该问题。此外,提出的解决方案假设发射节点受到能量约束。因此,提高网络生存期是另外的设计挑战。仿真结果表明,与现有的功率分配策略相比,该方案不仅可以最大程度地降低断电概率,而且可以节省SU的功耗,从而大大延长了网络寿命。

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