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Channel Model and Capacity Analysis of Molecular Communication with Brownian Motion

机译:布朗运动分子通信的通道模型和容量分析

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摘要

In this paper, we analyze the capacity of a molecular communication channel in a one dimensional environment where information is represented with molecules that are released by a transmitter nanomachine, propagate via Brownian motion, degrade over time, and stochastically reach the receiver nanomachine. The channel is modeled as a time slotted binary channel, and two modulation schemes are proposed: a naive modulation scheme and an extended modulation scheme with a redundant number of molecules. Our analysis demonstrates that the channel capacity is largely affected by the life expectancy of molecules. Our analysis also indicates that the extended modulation scheme can achieve nearly one bit per slot at the expense of extra molecules under optimal conditions.
机译:在本文中,我们分析了一维环境中分子通信通道的容量,在该环境中,信息由发射器纳米机释放,通过布朗运动传播,随时间退化并随机到达接收器纳米机的分子表示。将该信道建模为时隙二进制信道,并提出了两种调制方案:朴素调制方案和具有多余分子数量的扩展调制方案。我们的分析表明,通道容量在很大程度上受分子寿命的影响。我们的分析还表明,扩展的调制方案可以在最佳条件下以牺牲额外分子为代价,使每个时隙几乎达到一位。

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