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Performance Analysis of Reversible Binding Receptor Based Decode-and-Forward Relay in Molecular Communication Systems

机译:分子通信系统中基于可逆结合受体的解码转发中继的性能分析

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Molecular communication (MC) allows nano-machines to communicate and cooperate with each other in a fluid environment. The diffusion-based MC is easily constrained by the transmit distance due to the severe attenuation of molecule concentrations. In this letter, we present a decode-and-forward relay strategy for the reversible binding receptor in the diffusion-based MC system. The time-varying spatial distribution of the information molecules based on the reversible association and dissociation between ligand and receptor at the surface of receiver is characterized. An analytical expression for the evaluation of expected error probability is derived, and the key factors impacting the performance are exploited. Results show that the proposal can improve the performance significantly with a constant molecular budget, in which the performance gain can be maximized through optimizing the position of the relay nodes and the number of molecules assigned to the source nodes.
机译:分子通信(MC)允许纳米机器在流体环境中相互通信和合作。由于分子浓度的严重衰减,基于扩散的MC很容易受到传输距离的限制。在这封信中,我们提出了基于扩散的MC系统中可逆结合受体的解码转发中继策略。基于受体表面配体与受体之间可逆的缔合和解离,表征了信息分子的时空分布。推导了用于估计预期错误概率的解析表达式,并利用了影响性能的关键因素。结果表明,该建议可以以恒定的分子预算显着改善性能,其中可以通过优化中继节点的位置和分配给源节点的分子数量来最大程度地提高性能。

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