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Estimate-and-Forward Relaying in Molecular Communication using Brownian Motion with Drift

机译:利用漂移的布朗运动估算和​​前进中继分子通信

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In diffusion-based molecular communication (DMC) systems, the information-bearing molecular signal experiences high attenuation with long propagation delays. It is thereby essential to deploy an intermediate relay nanomachine to alleviate such problem. In this paper, we propose and investigate an estimate-and-forward (EF) relaying scheme for a two-hop DMC system using Brownian motion with drift. Moreover, we consider the quasi-constant statistics of residual and counting noises to account for the aberrations present in the system. The considered relaying scheme forwards an estimate of the transmitted number of molecules, which is derived based on maximum likelihood principle. Further, we obtain an expression for the end-to-end error probability by making use of energy detector. Numerical and simulation results validate our analysis and reveal the scenarios where EF scheme can be beneficial over the existing amplify-and-forward and decode-and-forward relaying schemes.
机译:在基于扩散的分子通信(DMC)系统中,信息承载分子信号经历高衰减,具有长传播延迟。因此,它必须部署中继继电器纳米载荷以减轻这种问题。在本文中,我们提出了一种使用Brownian Motion与漂移的双跳DMC系统的估计和前进(EF)中继方案。此外,我们考虑剩余和计数噪声的准恒定统计,以解释系统中存在的像差。考虑的中继方案前后估计的分子数,这是基于最大似然原理推导的。此外,我们通过利用能量检测器来获得端到端误差概率的表达。数值和仿真结果验证了我们的分析,并揭示了EF方案对现有放大和前进和转发和前进的中继方案有益的场景。

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