RF Energy Harvesting and Information Transmission Based on Power Splitting and NOMA for IoT Relay Systems

A. Rauniyar, P. Engelstad, O. Østerbø
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引用次数: 9

Abstract

Due to the proliferation of the Internet of Things (loT), an unprecedented expansion of wireless devices and communication among these devices for data transmission is expected over the next few years. IoT devices are rather power constrained and are mostly battery operated devices. Therefore, energy efficiency of such IoT devices or systems is a major concern. In this paper, radio frequency (RF) energy harvesting and information transmission based on Non-orthogonal multiple access (NOMA) protocol is considered for wireless powered IoT relay systems. A source node needs the help of power constrained IoT relay node IoTR to transmit its data. IoTR node first harvests the energy from the RF signal of the source node and process the information in the first stage and then transmits the source node information data along with its data using NOMA protocol in the next stage. Unlike most of the previous works in this domain, this paper also considers the data transmission of the IoTR node along with the source node to its intended destination nodes. Specifically, considering the energy constrained nature of IoT nodes and devices, we have used the combination of power splitting (PS) and NOMA protocol and have mathematically derived the outage probability and sum-throughput for the proposed system. We have also formulated an algorithm to find out the optimal power splitting factor that maximizes the sum-throughput of the proposed system. Our proposed system analytical results are validated by the simulation results.
基于功率分割和NOMA的物联网中继系统射频能量收集和信息传输
由于物联网(loT)的普及,预计未来几年无线设备和这些设备之间的数据传输通信将出现前所未有的扩张。物联网设备的功率相当有限,而且大多是电池供电的设备。因此,此类物联网设备或系统的能源效率是一个主要问题。本文研究了无线供电物联网中继系统中基于非正交多址(NOMA)协议的射频(RF)能量收集和信息传输。源节点需要功率受限的物联网中继节点IoTR的帮助来传输数据。IoTR节点首先从源节点的射频信号中获取能量,并在第一阶段对信息进行处理,然后在下一阶段使用NOMA协议将源节点信息数据与其数据一起传输。与该领域之前的大多数工作不同,本文还考虑了IoTR节点随着源节点到其预期目标节点的数据传输。具体来说,考虑到物联网节点和设备的能量约束性质,我们使用了功率分割(PS)和NOMA协议的组合,并从数学上推导了所提议系统的停电概率和总吞吐量。我们还制定了一种算法来找出最优的功率分割因子,使所提出的系统的总吞吐量最大化。仿真结果验证了系统分析结果的正确性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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