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Simultaneous Wireless Information and Power Transfer: Technologies, Applications, and Research Challenges

机译:同时进行无线信息和功率传输:技术,应用和研究挑战

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Energy efficiency will play a crucial role in future communication systems and has become a main design target for all 5G radio access networks. The high operational costs and impossibility of replacing or recharging wireless device batteries in multiple scenarios, such as wireless medical sensors inside the human body, call for a new technology by which wireless devices can harvest energy from the environment via capturing ambient RF signals. SWIPT has emerged as a powerful means to address this issue. In this article, we survey the current architectures and enabling technologies for SWIPT and identify technical challenges to implement SWIPT. Following an overview of enabling technologies for SWIPT and SWIPT-assisted wireless systems, we showcase a novel SWIPT-supported power allocation mechanism for D2D communications to illustrate the importance of the application of SWIPT. As an ending note, we point out some future research directions to encourage and motivate more research efforts on SWIPT.
机译:能源效率将在未来的通信系统中发挥关键作用,并已成为所有5G无线电接入网络的主要设计目标。高昂的运营成本以及在多种情况下(例如,人体内部的无线医疗传感器)无法为无线设备的电池更换或充电的需求,要求一种新技术,通过该技术,无线设备可以通过捕获周围的RF信号从环境中收集能量。 SWIPT已成为解决此问题的有力手段。在本文中,我们调查了SWIPT的当前体系结构和支持技术,并确定了实施SWIPT的技术挑战。在概述了SWIPT和SWIPT辅助无线系统的使能技术之后,我们展示了一种新颖的SWIPT支持的D2D通信功率分配机制,以说明SWIPT应用的重要性。最后,我们指出了一些未来的研究方向,以鼓励和激发更多关于SWIPT的研究工作。

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