In this paper, we consider bidirectional relaying between two diffusion-based molecular transceivers (bio-nodes). As opposed to existing literature, we incorporate the effect of direct diffusion links between the nodes and leverage it to improve performance. Assuming network coding type operation at the relay, we devise a detection strategy, based on the maximum-likelihood principle, that combines the signal received from the relay and that received from the direct link. At the same time, since a diffusion-based molecular communication channel is characterized by high inter-symbol interference (ISI), we utilize a decision feedback mechanism to mitigate its effect. Simulation results indicate that the proposed setup incorporating the direct link can achieve notable improvement in error performance over conventional detection schemes that do not exploit the direct link and/or do not attempt to mitigate the effect of ISI.
翻译:在本文中,我们考虑在两个基于扩散的分子收发器(Bio-nodes)之间进行双向中继。与现有的文献相比,我们纳入了节点之间直接扩散联系的影响,并利用这种联系来提高性能。假设中继器的网络编码操作在最大可能性原则的基础上,我们根据从中继接收的信号和从直接链接接收的信号制定探测战略。同时,由于基于扩散的分子通信渠道的特点是高共性干扰(ISI),我们利用一个决定反馈机制来减轻其影响。模拟结果表明,拟议中包含直接联系的设置可以显著改善不利用直接联系和/或无意减轻国际互换效应的常规探测计划的错误性能。