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Optimal Power Splitting for Simultaneous Information Detection and Energy Harvesting

机译:同时进行信息检测和能量收集的最佳功率分配

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This letter deals with the joint information and energy processing at the receiver of a point-to-point communication channel. In particular, the tradeoff between the achievable information rate and harvested energy for a multiple-antenna power splitting receiver is investigated. Here, the rate-energy region characterization is of particular interest, which is intrinsically a nonconvex problem. In this letter, an efficient algorithm is proposed for obtaining an approximate solution to the problem in polynomial time. This algorithm is mainly based on the Taylor approximation in conjunction with semidefinite relaxation, which is solved by interior-point methods. Moreover, we utilize the Gaussian randomization procedure to obtain a feasible solution for the original problem. It is shown that by proper receiver design the rate-energy region can be significantly enlarged compared to the state of the art, while at the same time the receiver hardware costs is reduced by utilizing less number of energy harvesting circuitry.
机译:这封信涉及点对点通信信道的接收者的联合信息和能量处理。特别是,研究了多天线功率分配接收器可达到的信息速率与收集的能量之间的折衷。在此,速率-能量区域表征特别令人关注,这本质上是一个非凸问题。在这封信中,提出了一种有效的算法来获得多项式时间问题的近似解。该算法主要基于泰勒逼近结合半确定松弛,通过内点法求解。此外,我们利用高斯随机化程序来获得原始问题的可行解。结果表明,通过适当的接收器设计,与现有技术相比,速率-能量区域可以显着扩大,同时,通过使用较少数量的能量收集电路,可以降低接收器的硬件成本。

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