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Enabling Energy Efficient Molecular Communication via Molecule Energy Transfer

机译:通过分子能量转移实现能源高效的分子通信

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摘要

Molecular communication via diffusion (MCvD) is inherently an energy efficient transportation paradigm, which requires no external energy during molecule propagation. Inspired by the fact that the emitted molecules have a finite probability to reach the receiver, this letter introduces an energy efficient scheme for the information molecule synthesis process of MCvD via a simultaneous molecular information and energy transfer (SMIET) relay. With this SMIET capability, the relay can decode the received information as well as generate its emission molecules using its absorbed molecules via chemical reactions. To reveal the advantages of SMIET, approximate closed-form expressions for the bit error probability and the synthesis cost of this two-hop molecular communication system are derived and then validated by particle-based simulation. Interestingly, by comparing with a conventional relay system, the SMIET relay system can be shown to achieve a lower minimum bit error probability via molecule division, and a lower synthesis cost via molecule type conversion or molecule division.
机译:通过扩散进行分子通信(MCvD)本质上是一种节能运输范式,在分子传播过程中不需要外部能量。受发射分子到达接收器的概率有限的事实启发,这封信介绍了一种通过同时的分子信息和能量传递(SMIET)继电器对MCvD的信息分子合成过程进行节能的方案。借助这种SMIET功能,中继器可以解码接收到的信息,并通过化学反应使用其吸收的分子生成其发射分子。为了揭示SMIET的优势,推导了该两跳分子通信系统的误码率近似概率和合成成本的近似形式,然后通过基于粒子的仿真进行了验证。有趣的是,通过与常规中继系统进行比较,可以证明SMIET中继系统通过分子划分实现了较低的最小误码率,并且通过分子类型转换或分子划分实现了较低的合成成本。

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