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具有 SWIPT 的 6G-IoT 绿色通信网络的混合有源-无源中继模型。

Hybrid Active-and-Passive Relaying Model for 6G-IoT Greencom Networks with SWIPT.

机构信息

Interdisciplinary Centre for Security, Reliability and Trust (SnT), University of Luxembourg, L-1855 Luxembourg, Luxembourg.

Huawei Technologies Sweden AB, Vädursgatan 5, 412 50 Göteborg, Sweden.

出版信息

Sensors (Basel). 2021 Sep 8;21(18):6013. doi: 10.3390/s21186013.

Abstract

In order to support a massive number of resource-constrained Internet-of-Things (IoT) devices and machine-type devices, it is crucial to design a future beyond 5G/6G wireless networks in an energy-efficient manner while incorporating suitable network coverage expansion methodologies. To this end, this paper proposes a novel two-hop hybrid active-and-passive relaying scheme to facilitate simultaneous wireless information and power transfer (SWIPT) considering both time-switching (TS) and power-splitting (PS) receiver architectures, while dynamically modelling the involved dual-hop time-period (TP) metric. An optimization problem is formulated to jointly optimize the throughput, harvested energy, and transmit power of a SWIPT-enabled system with the proposed hybrid scheme. In this regard, we provide two distinct ways to obtain suitable solutions based on the Lagrange dual technique and Dinkelbach method assisted convex programming, respectively, where both the approaches yield an appreciable solution within polynomial computational time. The experimental results are obtained by directly solving the primal problem using a non-linear optimizer. Our numerical results in terms of weighted utility function show the superior performance of the proposed hybrid scheme over passive repeater-only and active relay-only schemes, while also depicting their individual performance benefits over the corresponding benchmark SWIPT systems with the fixed-TP.

摘要

为了支持大量资源受限的物联网 (IoT) 设备和机器类型设备,设计一种超越 5G/6G 无线网络的未来,以节能的方式同时结合合适的网络覆盖扩展方法至关重要。为此,本文提出了一种新颖的两跳混合主动和被动中继方案,考虑了时间切换 (TS) 和功率分割 (PS) 接收机架构,同时动态建模所涉及的双跳时间周期 (TP) 度量,以促进同时的无线信息和功率传输 (SWIPT)。该方案针对所提出的混合方案,通过优化问题联合优化了具有 SWIPT 功能的系统的吞吐量、接收的能量和传输功率。在这方面,我们提供了两种不同的方法,分别基于拉格朗日对偶技术和 Dinkelbach 方法辅助凸规划来获得合适的解决方案,这两种方法都在多项式计算时间内得到了令人满意的解决方案。实验结果是通过使用非线性优化器直接求解原问题得到的。我们的加权效用函数的数值结果表明,所提出的混合方案在性能上优于仅被动中继和仅主动中继方案,同时还描绘了它们在具有固定 TP 的相应基准 SWIPT 系统中的个别性能优势。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a553/8471845/77e2a34e3adb/sensors-21-06013-g001.jpg

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