Finite Horizon Throughput Maximization for a Wirelessly Powered Device Over a Time Varying Channel

Mehdi Salehi Heydar Abad, Özgür Erçetin
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引用次数: 1

Abstract

In this work, we consider an energy harvesting device (EHD) served by an access point with a single antenna that is used for both wireless power transfer (WPT) and data transfer. The objective is to maximize the expected throughput of the EHD over a finite horizon when the channel state information is only available causally. The EHD is energized by WPT for a certain duration, which is subject to optimization, and then, EHD transmits its information bits to the AP until the end of the time horizon by employing optimal dynamic power allocation. The joint optimization problem is modeled as a dynamic programming problem. Based on the characteristic of the problem, we prove that a time dependent threshold type structure exists for the optimal WPT duration, and we obtain closed form solution to the dynamic power allocation in the uplink period.
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时变信道上无线供电设备的有限水平吞吐量最大化
在这项工作中,我们考虑了一种能量收集装置(EHD),该装置由具有单天线的接入点提供服务,用于无线电力传输(WPT)和数据传输。目标是在信道状态信息只是偶然可用的情况下,在有限范围内最大化EHD的预期吞吐量。通过WPT对EHD进行一定时间的激励,并对其进行优化,然后通过最优动态功率分配将EHD的信息位传输到AP,直到时间范围结束。将联合优化问题建模为一个动态规划问题。根据问题的特点,证明了最优WPT持续时间存在时间依赖的阈值型结构,并得到了上行时段动态功率分配的封闭解。
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