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Stability Analysis of Slotted Aloha With Opportunistic RF Energy Harvesting

机译:机会性射频能量收集对开槽阿罗哈船的稳定性分析

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摘要

Energy harvesting (EH) is a promising technology for realizing energy-efficient wireless networks. In this paper, we utilize the ambient RF energy, particularly interference from neighboring transmissions, to replenish the batteries of the EH enabled nodes. However, RF energy harvesting imposes new challenges into the analysis of wireless networks. Our objective in this paper is to investigate the performance of a slotted Aloha random access wireless network consisting of two types of nodes, namely Type I, which has unlimited energy supply and Type II, which is solely powered by an RF energy harvesting circuit. The transmissions of a Type I node are recycled by a Type II node to replenish its battery. We characterize an inner bound on the stable throughput region under half-duplex and full-duplex energy harvesting paradigms as well as for the finite capacity battery case. Additionally, we analyze the case where RF energy harvesting serves as a backup for an unlimited energy source. We present numerical results that validate our analytical results, and demonstrate their utility for the analysis of the exact system.
机译:能量收集(EH)是一种实现节能无线网络的有前途的技术。在本文中,我们利用环境RF能量(尤其是来自相邻传输的干扰)来补充启用EH的节点的电池。但是,RF能量收集对无线网络的分析提出了新的挑战。本文的目的是研究由两种类型的节点组成的带时隙Aloha随机访问无线网络的性能,即具有无限能量供应的Type I和仅由RF能量收集电路供电的Type II。类型I节点的传输由类型II节点回收以补充其电池。我们在半双工和全双工能量收集范例以及有限容量电池情况下,描述了稳定吞吐量区域的内界。此外,我们分析了射频能量收集作为无限能源的后备情况。我们提供数值结果验证我们的分析结果,并证明其在精确系统分析中的效用。

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