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Optimal Cooperation Strategy in Cognitive Radio Systems with Energy Harvesting

机译:具有能量收集的认知无线电系统中的最佳合作策略

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In recent years, the excessive energy consumption in wireless communication systems has been increasingly critical, and environmental and financial considerations have motivated a trend in wireless communication technologies to resort to renewable energy sources. Energy harvesting is considered as a promising solution to alleviate such issues and has received extensive attentions. In this paper, we consider a cognitive radio system with one primary user (PU) and one secondary user (SU) and both of their transmitters operate in time-slotted mode. The SU, which harvests energy exclusively from ambient radio signal, follows a save-then-transmit protocol. In such a scenario, we investigate the SU's optimal cooperation strategy, namely, the optimal decision (to cooperate with the PU or not) and the optimal action (to spend how much time on energy harvesting and to allocate how much power for cooperative relay). We separately investigate the optimal action in non-cooperation and cooperation modes to maximize the SU's achievable throughout and derive the optimal closed-form solutions. Based on the analytical results of the optimal solutions, we propose the optimal cooperation protocol (OCP) to make the optimal decision, which simply involves a two-level test. Simulation results show that the proposed OCP outperforms the other two protocols (non-cooperation protocol and stochastic cooperation protocol) and the optimal underlay (OU) transmission mode.
机译:近年来,无线通信系统中过多的能源消耗变得越来越重要,并且环境和财务方面的考虑促使无线通信技术趋向于诉诸可再生能源。能量收集被认为是缓解此类问题的有前途的解决方案,并受到了广泛的关注。在本文中,我们考虑一个认知无线电系统,该系统具有一个主要用户(PU)和一个次要用户(SU),并且它们的两个发送器都以时隙模式工作。仅从环境无线电信号中收集能量的SU遵循然后保存-传输协议。在这种情况下,我们研究SU的最佳合作策略,即最佳决策(是否与PU合作)和最佳行动(花费多少时间进行能量收集并为合作中继分配多少功率) 。我们分别研究非合作和合作模式下的最佳行动,以最大程度地实现SU的可实现性,并得出最佳的封闭形式解决方案。基于最优解的分析结果,我们提出了最优合作协议(OCP)来做出最优决策,该决策仅涉及两级测试。仿真结果表明,所提出的OCP优于其他两种协议(非合作协议和随机合作协议)和最优底层传输模式。

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