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Optimal Harvest-or-Transmit Strategy for Energy Harvesting Underlay Cognitive Radio Network

机译:能量收集底层认知无线电网络的最佳收获或传输策略

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An underlay cognitive radio network with energy harvesting is considered which operates in slotted fashion. The primary user (PU) transmits with a constant power in each slot, while the secondary user (SU) either harvests energy from primary's transmission or transmits its data. We propose an optimal offline harvest-or-transmit strategy where in each slot, SU takes a decision whether to harvest energy or transmit its data limiting interference at the primary receiver. We aim to maximize the achievable rate of SU under energy causality and interference constraints. The optimization problem is formulated as a mixed integer non-linear program and the optimal harvest-or-transmit policy is obtained using generalized Benders decomposition algorithm. Through simulations, we analyze the effects of various system parameters and interference constraint at the primary receiver on the optimal policy.
机译:考虑具有能量收集的底层认知无线电网络,其以开槽方式运行。主用户(PU)以每个时隙中的恒定功率发送,而辅助用户(SU)从主要的传输收集能量或发送其数据。我们提出了一个最佳的离线收获或传输策略,其中在每个时隙中,SU决定是否收集能量或传输其在主接收器处的限制干扰。我们的目标是在能量因果关系和干扰约束下最大化SU的可实现率。优化问题被制定为混合整数非线性程序,并且使用广义弯曲分解算法获得最佳收获或发射策略。通过仿真,我们在最佳政策上分析各种系统参数和干扰约束对主接收器的影响。

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