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Relay selection and power allocation for energy-efficient cooperative cognitive radio networks

机译:节能协作认知无线电网络的中继选择和功率分配

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摘要

In this paper, we apply the innovative multi-objective optimization methods to the challenge posed by rate maximization, total transmission power minimization and relay selection in cooperative cognitive radio networks. The proposed methods which are based on amplify and forward relaying strategy optimize the three conflicting objectives and, at same time, they maximize the rate quality, minimize the total transmission power allocated to the network relays and make the best relay node selection. The multi-objective optimization studied is a non-convex non-linear combinatorial algorithm which is converted to its convex smooth equivalent through two efficient approximation methods. We apply the multi-objective lexicographic method to overcome the challenge posed by these conflicting objectives simultaneously. The proposed relay node selection method is based on zero-norm principle which provides an effective technique to obtain a minimum node selection. Simulation results confirm that the proposed approaches offer superior performance over known schemes in terms of throughput gain and number of active relays.
机译:在本文中,我们将创新的多目标优化方法应用于协作认知无线电网络中的速率最大化,总传输功率最小化和中继选择带来的挑战。所提出的基于放大和正向中继策略的方法优化了三个冲突的目标,同时,它们使速率质量最大化,分配给网络中继的总传输功率最小,并做出最佳中继节点选择。研究的多目标优化是一种非凸非线性组合算法,可通过两种有效的逼近方法将其转换为凸光滑等效项。我们应用多目标词典方法来同时克服这些冲突目标所带来的挑战。所提出的中继节点选择方法基于零范数原理,该方法提供了一种获得最小节点选择的有效技术。仿真结果证实,在吞吐量增益和有源继电器数量方面,所提出的方法比已知方案具有更高的性能。

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