为未来提供动力:下一代无线网络环境射频通信系统调查

IF 1.5 Q3 TELECOMMUNICATIONS
Shweta Singh, Manish Kumar, Rahul Kumar
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引用次数: 0

摘要

新兴的无线通信网络,以5G到后续技术的演变为例,需要无数设备之间的广泛连接,以推动持续的技术进步。然而,这个网络的规模需要广泛的电源,需要一个先进和可持续的系统来实际部署。本研究介绍了一种利用环境射频信号进行无线信息传输(WIT)和无线电力传输的尖端系统。提出的系统解决了网络中数十亿低功率无线设备的能量不足问题。无线供电通信网络(WPCN)和同步无线能量和功率传输(SWIPT)技术,在环境射频信号上运行,为这些设备的能量需求提供了解决方案。从环境射频信号中获取能量对于WPCN和SWIPT系统的信号传输至关重要。研究的重点是提高这些系统的效率和可行性,强调最大限度地提高能源效率(EE)和改善停电性能(OP)等方面。本文强调了节点移动性带来的无处不在的连接,并深入研究了WPCN和SWIPT的新兴模型,以及与这些模型集成的协作技术。探讨了WPCN环境下的资源分配(RA)、多输入多输出(MIMO)技术以及中继操作的各个方面,包括SWIPT-MIMO和SWIPT接收器架构。最后,综合调查证实,利用环境射频信号进行WIT和功率传输可以显著提高EE、OP、RA和整体网络能力。这种改进使所提出的系统成为满足未来无线通信技术连接需求的有前途的解决方案。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Powering the future: A survey of ambient RF-based communication systems for next-gen wireless networks

Powering the future: A survey of ambient RF-based communication systems for next-gen wireless networks

Emerging wireless communication networks, exemplified by the evolution from 5G to subsequent technologies, necessitate extensive connectivity among myriad devices to fuel the ongoing technological progress. However, the magnitude of this network demands an extensive power source, requiring an advanced and sustainable system to be practically deployable. This study introduces a cutting-edge system utilising ambient RF signals for both wireless information transfer (WIT) and wireless power transfer. The proposed system addresses the energy deficiencies of billions of low-powered wireless devices within the network. Wireless-powered communication networks (WPCN) and simultaneous wireless energy and power transfer (SWIPT) technologies, operating on ambient RF signals, provide a solution for the energy requirements of these devices. Harvesting energy from ambient RF signals is pivotal for the signal transmissions of WPCN and SWIPT systems. The research focuses on enhancing the efficiency and feasibility of such systems, emphasising aspects like maximising energy efficiency (EE) and improving outage performance (OP). The paper underscores the ubiquitous connectivity resulting from node mobility and delves into the emerging models of WPCN and SWIPT, along with collaborative technologies integrated with these models. It explores resource allocation (RA), multiple-input multiple-output (MIMO) technology in the context of WPCN, and various aspects of relaying operations, including SWIPT-MIMO and SWIPT receiver architecture. Conclusively, the comprehensive survey affirms that leveraging ambient RF signals for WIT and power transfer can significantly enhance EE, OP, RA, and overall network capabilities. This improvement positions the proposed system as a promising solution for meeting the connectivity demands of future wireless communication technologies.

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来源期刊
IET Wireless Sensor Systems
IET Wireless Sensor Systems TELECOMMUNICATIONS-
CiteScore
4.90
自引率
5.30%
发文量
13
审稿时长
33 weeks
期刊介绍: IET Wireless Sensor Systems is aimed at the growing field of wireless sensor networks and distributed systems, which has been expanding rapidly in recent years and is evolving into a multi-billion dollar industry. The Journal has been launched to give a platform to researchers and academics in the field and is intended to cover the research, engineering, technological developments, innovative deployment of distributed sensor and actuator systems. Topics covered include, but are not limited to theoretical developments of: Innovative Architectures for Smart Sensors;Nano Sensors and Actuators Unstructured Networking; Cooperative and Clustering Distributed Sensors; Data Fusion for Distributed Sensors; Distributed Intelligence in Distributed Sensors; Energy Harvesting for and Lifetime of Smart Sensors and Actuators; Cross-Layer Design and Layer Optimisation in Distributed Sensors; Security, Trust and Dependability of Distributed Sensors. The Journal also covers; Innovative Services and Applications for: Monitoring: Health, Traffic, Weather and Toxins; Surveillance: Target Tracking and Localization; Observation: Global Resources and Geological Activities (Earth, Forest, Mines, Underwater); Industrial Applications of Distributed Sensors in Green and Agile Manufacturing; Sensor and RFID Applications of the Internet-of-Things ("IoT"); Smart Metering; Machine-to-Machine Communications.
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