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RF Energy Harvesting and Information Transmission Based on NOMA for Wireless Powered IoT Relay Systems

机译:基于NOMA的无线电力IoT中继系统的射频能量收集和信息传输

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摘要

Amidst the rapid development of the fifth generation (5G) networks, Internet of Things (IoT) is considered as one of the most important part of 5G next generation networks as it can support massive object communications. These massive object communications in the context of IoT is expected to consume a huge power. Furthermore, IoT sensors or devices are rather power constrained and are mostly battery operated. Therefore, energy efficiency of such network of IoT devices is a major concern. On the other hand, energy harvesting (EH) is an emerging paradigm that allows the wireless nodes to recharge themselves through radio frequency (RF) signals directed to them from the source node and then relaying or transmitting the information. Although a myriad of works have been carried out in the literature for EH, the vast majority of those works only consider RF EH at the relay node and successfully transmitting the source node data. Those approaches do not consider the data transmission of the relay node that may be an energy deprived IoT node which needs to transmit its own data along with the source node data to their respective destination nodes. Therefore, in this paper, we envisioned a RF EH and information transmission system based on time switching (TS) relaying, power splitting (PS) relaying and non-orthogonal multiple access (NOMA) which is suitable for wireless powered IoT relay systems. A source node information data is relayed through power constrained IoT relay node IoTR that first harvests the energy from source node RF signal using either TS and PS relaying protocol and then transmits the source node information along with its information using NOMA protocol to the respective destination nodes. Considering NOMA as a transmission protocol, we have mathematically derived analytical expressions for TS and PS relaying protocol for our proposed system. We have also formulated an algorithm to find out optimal TS and PS factor that maximizes the sum-throughput for our proposed system. Our proposed system analytical results for TS and PS protocol are validated by the simulation results.
机译:在第五代(5G)网络的快速发展中,物联网(IoT)被视为5G下一代网络最重要的部分之一,因为它可以支持大规模的对象通信。物联网背景下的这些大规模对象通信预计将消耗巨大的力量。此外,物联网传感器或设备受功率的限制很大,并且大多由电池供电。因此,这种物联网设备网络的能源效率是一个主要问题。另一方面,能量收集(EH)是新兴的范式,它允许无线节点通过从源节点定向到无线节点的射频(RF)信号为自己充电,然后中继或传输信息。尽管在文献中已经为EH进行了大量工作,但是这些工作中的绝大多数只考虑了中继节点上的RF EH并成功传输了源节点数据。这些方法没有考虑中继节点的数据传输,中继节点可能是能源匮乏的物联网节点,需要将其自身的数据与源节点数据一起传输到其各自的目标节点。因此,在本文中,我们设想了一种适用于无线IoT中继系统的基于时间切换(TS)中继,功率分配(PS)中继和非正交多址(NOMA)的RF EH和信息传输系统。通过功率受限的IoT中继节点中继源节点信息数据 I o T R 首先使用TS和PS中继协议从源节点RF信号中获取能量,然后使用NOMA协议将源节点信息及其信息传输到各个目标节点。将NOMA视为传输协议,我们为建议的系统使用了数学推导的TS和PS中继协议的解析表达式。我们还制定了一种算法,以找出最佳TS和PS因子,从而使拟议系统的总吞吐量最大化。仿真结果验证了我们针对TS和PS协议提出的系统分析结果。

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