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Multiuser Scheduling Schemes for Simultaneous Wireless Information and Power Transfer Over Fading Channels

机译:衰落信道上同时进行无线信息和功率传输的多用户调度方案

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摘要

Radio-frequency (RF) energy harvesting presents a viable solution to prolong the lifetime of wireless communication devices. In this paper, we study downlink multiuser scheduling for a time-slotted system with simultaneous wireless information and power transfer. In particular, in each time slot, a single user is scheduled to receive information, whereas the remaining users opportunistically harvest the ambient RF energy. We devise novel online scheduling schemes in which the tradeoff between the users' ergodic rates and their average amount of harvested energy can be controlled. In particular, we modify the well-known maximum signal-to-noise ratio (SNR) and maximum normalized-SNR (N-SNR) schedulers by scheduling the user whose SNR/N-SNR has a certain ascending order (selection order) rather than the maximum one. We refer to these new schemes as order-based SNR/N-SNR scheduling and show that the lower the selection order, the higher the average amount of harvested energy in the system at the expense of a reduced ergodic sum rate. The order-based N-SNR scheduling scheme provides proportional fairness among the users in terms of both the ergodic achievable rate and the average harvested energy. Furthermore, we propose an order-based equal throughput (ET) fair scheduler, which schedules the user having the minimum moving average throughput out of the users whose N-SNR orders fall into a given set of allowed orders. We show that this scheme provides the users with proportionally fair average harvested energy values. In this context, we also derive feasibility conditions for achieving ET with the order-based ET scheduler. Using the theory of order statistics, the average per-user harvested energy and ergodic achievable rate of all proposed scheduling schemes are analyzed and obtained in closed form for independent and nonidentically distributed Rayleigh, Rician, Nakagami- , and Weibull fading chan- els. Our closed-form analytical results are corroborated by simulations.
机译:射频(RF)能量收集是延长无线通信设备寿命的可行解决方案。在本文中,我们研究了同时无线信息和功率传输的时隙系统的下行链路多用户调度。特别地,在每个时隙中,安排单个用户接收信息,而其余用户则机会性地获取环境RF能量。我们设计了新颖的在线计划方案,可以控制用户的遍历率与其平均能量采集量之间的折衷。特别是,我们通过调度SNR / N-SNR具有一定升序(选择顺序)的用户来修改众所周知的最大信噪比(SNR)和最大归一化SNR(N-SNR)调度程序比最大的我们将这些新方案称为基于订单的SNR / N-SNR调度,并表明选择顺序越低,系统中平均平均能量采集量就越高,但代价是降低了遍历总和率。基于顺序的N-SNR调度方案在遍历可达到的速率和平均收获的能量方面提供了用户之间的比例公平性。此外,我们提出了一种基于订单的平均吞吐量(ET)公平调度程序,该程序将N-SNR阶数落入给定允许阶数的用户中的移动平均吞吐量最小的用户进行调度。我们表明,该方案为用户提供了比例公平的平均收获能量值。在这种情况下,我们还得出了使用基于订单的ET计划程序实现ET的可行性条件。使用阶跃统计理论,对所有提议的调度方案的平均每用户收获能量和遍历可达到的速率进行分析,并以封闭的形式获得独立且不相同分布的瑞利,里斯安,中加和威布尔衰落信道。我们的封闭形式的分析结果通过仿真得到了证实。

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