论文标题
下一代无线网络的协作RF和Lightwave电力传输
Collaborative RF and Lightwave Power Transfer for Next-Generation Wireless Networks
论文作者
论文摘要
为了满足无线节点对能源可持续性的要求,无线网络的信息和电力传输的突破至关重要。为此,在学术界和行业方面的重大研究工作已致力于设计最佳资源分配方案,用于同时无线信息和电力传输(SWIPT)网络。安全法规施加的发射功率约束为改善功率性能带来了重大挑战。因此,仅依靠RF资源来应对下一代无线网络的期望,例如更长的设备寿命和更高的数据速率,可能已经不再是可能的。因此,对常规RF旋转互补的技术的调查至关重要。在本文中,我们为未来网络提出了一种新颖的协作RF和Lightwave电源传输技术,在该技术中,RF和Lightwave频段都可以完全利用。在这种情况下,我们介绍了基本的收发器体系结构和四个相应的协作通信和电力传输协议。最后,突出了关键的未来研究方向。
Breakthroughs in information and power transfer for wireless networks are imperative in order to satisfy the requirement of wireless nodes for energy sustainability. To this end, significant research efforts in academia and industry have been devoted to the design of optimal resource allocation schemes for RF simultaneous wireless information and power transfer (SWIPT) networks. The transmit power constraints imposed by safety regulations introduce significant challenges to the improvement of the power transfer performance. Therefore, solely relying on RF resources to cope with the expectations of next-generation wireless networks, such as longer device lifetimes and higher data rates, may no longer be possible. Thus, the investigation of technologies complementary to conventional RF SWIPT is of critical importance. In this article, we propose a novel collaborative RF and lightwave power transfer technology for future networks, where both the RF and lightwave bands can be entirely exploited. In this context, we introduce the basic transceiver architecture and four corresponding collaborative communication and power transfer protocols. Finally, key potential future research directions are highlighted.