On the Energy Efficiency of Relay-Assisted In- Vivo Nano- Networks Communications

Marcos Eduardo Pivaro Monteiro, J. L. Rebelatto, G. Brante
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引用次数: 6

Abstract

We evaluate the performance in terms of energy efficiency of multiple cooperative schemes for in-vivo nano-networks in the terahertz band. More specifically, we consider a multiple relay-aided network where the relays are capable of operating under: i) all-active relaying, where multiple relay nodes are placed midway between the transmitter $(S)$ and the receiver $(D)$ nodes in order to forward the messages; ii) selective relaying, where, similarly to the all-active scheme, multiple relay nodes are placed between $S$ and $D$, but only a selected relay forward the message; iii) multi-hop relaying, where, instead of placing the relays midway between $S$ and $D$, the relays are evenly distributed in the communication path. Our analysis demonstrates that the optimal scheme is distance-dependent and, for larger distances, the multi-hop scheme outperforms the other aforementioned schemes.
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中继辅助体内纳米网络通信的能量效率研究
我们从能量效率的角度评估了太赫兹频段内体内纳米网络的多种合作方案的性能。更具体地说,我们考虑一个多中继辅助网络,其中中继能够在以下情况下工作:i)全有源中继,其中多个中继节点放置在发送器$(S)$和接收器$(D)$节点之间,以便转发消息;ii)选择性中继,与全主动方案类似,在$S$和$D$之间放置多个中继节点,但只有一个选定的中继转发消息;iii)多跳中继,不再将中继放置在$S$和$D$之间,而是将中继均匀地分布在通信路径中。我们的分析表明,最优方案是距离相关的,对于更大的距离,多跳方案优于上述其他方案。
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