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Exploiting Constructive Interference for Simultaneous Wireless Information and Power Transfer in Multiuser Downlink Systems

机译:在多用户下行链路系统中利用建设性干扰同时进行无线信息和功率传输

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In this paper, we propose a power-efficient approach for information and energy transfer in multiple-input single-output downlink systems. By means of data-aided precoding, we exploit the constructive part of interference for both information decoding and wireless power transfer. Rather than suppressing interference as in conventional schemes, we take advantage of constructive interference among users, inherent in the downlink, as a source of both and . Specifically, we propose a new precoding design that minimizes the transmit power while guaranteeing the quality of service (QoS) and energy harvesting constraints for generic phase shift keying modulated signals. The QoS constraints are modified to accommodate constructive interference, based on the constructive regions in the signal constellation. Although the resulting problem is nonconvex, several methods are developed for its solution. First, we derive necessary and sufficient conditions for the feasibility of the considered problem. Then we propose second-order cone programming and semi-definite programming algorithms with polynomial complexity that provide upper and lower bounds to the optimal solution and establish the asymptotic optimality of these algorithms when the modulation order and SINR threshold tend to infinity. A practical iterative algorithm is also proposed based on successive linear approximation of the nonconvex terms yielding excellent results. More complex algorithms are also proposed to provide tight upper and lower bounds for benchmarking purposes. Simulation results show significant power savings with the proposed data-aided precoding approach compared to the conventional precoding scheme.
机译:在本文中,我们提出了一种在多输入单输出下行链路系统中进行信息和能量传输的节能方法。通过数据辅助预编码,我们将干扰的建设性部分用于信息解码和无线电力传输。而不是像常规方案那样抑制干扰,我们利用下行链路中固有的用户之间的建设性干扰作为和的源。具体来说,我们提出了一种新的预编码设计,该设计可在确保通用相移键控调制信号的服务质量(QoS)和能量收集约束的同时,将发射功率降至最低。基于信号星座中的建设性区域,修改QoS约束以适应建设性干扰。尽管由此产生的问题是非凸的,但已开发出几种解决方案。首先,我们为所考虑问题的可行性得出了必要的充分条件。然后我们提出了具有多项式复杂度的二阶锥规划和半定规划算法,它们为最优解提供了上限和下限,并在调制阶数和SINR阈值趋于无穷大时建立了这些算法的渐近最优性。还提出了一种基于非凸项的连续线性逼近的实用迭代算法,可产生出色的结果。还提出了更复杂的算法来提供严格的上限和下限,以进行基准测试。仿真结果表明,与传统的预编码方案相比,采用建议的数据辅助预编码方法可显着节省功耗。

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