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Diversity analysis of an outage minimizing energy harvesting wireless protocol in Rayleigh fading

机译:瑞利衰落中将中断最小化的能量收集无线协议的多样性分析

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In a recent paper, the authors introduced the save-then-transmit (ST) protocol, designed for a wireless link with an energy harvesting transmitter. The outage minimizing ST protocol computes the fraction of each frame to reserve for energy harvesting by the main energy storage device (ESD); the rest of the frame is used concurrently for message transmission and for charging of the secondary ESD. In this paper, we study the performance loss due to the randomness of energy availability at the transmitter, compared to a conventional system with a deterministic supply of power, through a derivation of the outage probability expression under certain special conditions. It will be shown that this performance loss is dependent on the distribution assumed for the energy harvesting rate, X. Different parameter settings for a Gamma-distributed X lead to performance gaps ranging from 1 to 10 dB. These results confirm that the performance loss incurred by using an unreliable energy source is heavily dependent on the variability of the source.
机译:在最近的一篇论文中,作者介绍了保存然后发送(ST)协议,该协议旨在与能量收集发送器进行无线链接。中断最小化ST协议计算每个帧的分数,以保留以供主能量存储设备(ESD)收集能量;其余帧同时用于消息传输和辅助ESD的充电。在本文中,我们通过推导特定条件下的断电概率表达式,研究了与具有确定的电源供应的传统系统相比,由于变送器处能量可用性的随机性导致的性能损失。将显示此性能损失取决于为能量收集速率X假定的分布。伽马分布X的不同参数设置会导致性能差距介于1到10 dB之间。这些结果证实,使用不可靠的能源导致的性能损失在很大程度上取决于能源的可变性。

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