无线传感器网络中多源射频能量采集

K. N. Puniran, R. Ahmad, R. Dziyauddin
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引用次数: 4

摘要

用于无线传感器网络的能量收集(EH)模块已成为延长设备内部传统电池寿命的一个有前途的特性。这种新兴技术正在引起传感器制造商和全球学者的兴趣。采用EH模块的概念必须具有成本效益和实用性。在这种情况下,由于清除器模块的大小,资源的可用性和转换效率,使用除RF之外的EH模块类型更为现实。大多数石油和天然气工厂在清除周围(如路由器、Wi-Fi、基站、手机)的射频方面存在一些缺点,因为它们位于偏远地区,因此有限的能源可能对这种应用构成威胁。在任何约束节点中,包括同信道干扰(CCI)在内的多源是通过无线网格拓扑从环境射频能量中清除几种浪费的可行方法。本文提出了一种中继节点受能量约束的三节点译码转发(DF)模型。在称为多源单继电器(MSSR)的系统模型中添加了多个主源和CCI。在功率分割中继(PSR)方案中,建立了一个数学模型,以获得在一个目的地的平均系统吞吐量。对平均吞吐量和功率比进行了数值模拟,并与单源单中继(SSSR)和理想接收机进行了比较。通过在约束节点应用多源和CCI作为能量增强,PSR的EH比的最优值比具有更好系统容量的理想接收器提高了10%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
RF energy harvesting with multiple sources in wireless sensor network
Energy harvesting (EH) module for wireless sensor network has become a promising feature to prolong the conventional battery inside the devices. This emerging technology is gaining interest from sensor manufacturers as well as academicians across the globe. The concept of employing EH module must be cost effective and practical. In such, the use of EH module type besides RF is more realistic due to the size of the scavenger module, the availability of the resources and conversion efficiency. Most of the oil and gas plants have some drawbacks in scavenging RF from surrounding (i.e. router, Wi-Fi, base station, cell phone) due to its placement in remote area and thus limited energy sources could be a threat in this application. Multiple sources, including co-channel interference (CCI) in any constraint nodes is a feasible way of scavenging several wastes from ambient RF energy via wireless mesh topology. In this paper, a 3-node decode-and-forward (DF) model is proposed where the relay node is subject to an energy constraint. Multiple primary sources and CCI are added in the system model known as Multiple-Source and Single-Relay (MSSR). A mathematical model is derived in Power Splitting Relaying (PSR) schemes to obtain an average system throughput at a destination. Numerical simulation with respect to the average throughput and power ratio was performed and compared with the Single-Source and Single-Relay (SSSR) and ideal receiver. By applying multiple sources and CCI as an energy enhancement at the constraint node, the optimal value of EH ratio for PSR is increased by 10% as compared to the ideal receiver with better system capacity.
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