Profit maximization in wireless powered communications with improved non-linear energy conversion and storage efficiencies

Liqin Shi, Liqiang Zhao, Kai Liang, Xiaoli Chu, Gang Wu, Hsiao-Hwa Chen
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引用次数: 23

Abstract

In this paper, we investigate profit maximization problem in wireless powered communication (WPC) systems, where the profit is defined as the difference between the revenue earned from uplink data transmission and total energy cost of the system. Since the efficiencies of energy harvesting (EH) circuits and battery storage are both non-linear, conventional linear models will lead to suboptimal resource allocation. In this paper, we propose to maximize the profit of a WPC system under nonlinear energy harvesting and storage models. In order to solve the non-convex optimization problem, we develop a piecewise linear EH model, which is more accurate than conventional linear EH models and existing non-linear EH models. Numerical results show that the power and time allocation design based on the non-linear energy harvesting and storage models outperforms that based on existing linear models in terms of the profit.
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利用改进的非线性能量转换和存储效率实现无线供电通信的利润最大化
本文研究无线供电通信(WPC)系统中的利润最大化问题,其中利润被定义为从上行数据传输中获得的收益与系统总能源成本之差。由于能量收集(EH)电路和电池存储的效率都是非线性的,传统的线性模型将导致次优资源分配。在本文中,我们提出了在非线性能量收集和储存模型下WPC系统的利润最大化。为了解决非凸优化问题,我们建立了一种分段线性EH模型,该模型比传统的线性EH模型和现有的非线性EH模型更精确。数值结果表明,基于非线性能量收集和存储模型的功率和时间分配设计在利润方面优于基于现有线性模型的设计。
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