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MAP detector performance analysis in diffusion-based relaying molecular communications

机译:基于扩散的中继分子通信中的MAP检测器性能分析

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Molecular Communication via Diffusion (MCvD) is a promising paradigm which enables nano-machines to communicate with each other. However, the reliability of existing communication systems degrades rapidly as the distance between the transmitters and the receivers grows. To solve this issue, relaying schemes must be implemented in practice. In this paper, we study two relaying schemes: In the first case, the relay node decodes the incoming signal symbol and forwards it to the receiver using a different types of molecules. Then, the receiver detects the information bits by only considering the molecules from the relay node. In the second case, the receiver considers both types of molecules sent from the transmitter and the relay node. Closed-form expression for the end-to-end bit error probability of the these two schemes are derived. Also, we obtain optimal relay location for both schemes. Moreover, we study the optimal threshold, concentration, baud-rate and timing offset to mitigate the overall Inter-Symbol Interference(ISI) and obtain maximum throughput in the relay network. (C) 2019 Elsevier B.V. All rights reserved.
机译:通过扩散进行分子通信(MCvD)是一种很有前途的范例,它使纳米机器能够相互通信。然而,随着发射器和接收器之间的距离增加,现有通信系统的可靠性迅速降低。为了解决这个问题,必须在实践中实施中继方案。在本文中,我们研究了两种中继方案:在第一种情况下,中继节点使用不同类型的分子对输入信号符号进行解码,并将其转发给接收器。然后,接收器仅通过考虑来自中继节点的分子来检测信息位。在第二种情况下,接收器考虑从发送器和中继节点发送的两种分子。得出了这两种方案的端到端误码率的闭式表达式。同样,我们为两种方案都获得了最佳的中继位置。此外,我们研究了最佳阈值,集中度,波特率和时序偏移,以减轻整体符号间干扰(ISI),并在中继网络中获得最大吞吐量。 (C)2019 Elsevier B.V.保留所有权利。

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