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Channel capacity analysis for molecular communication with continuous molecule emission

机译:连续分子排放分子通信的信道容量分析

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Molecular communication is a promising paradigm to communicate at nanoscale and it is inspired by nature. The molecules can be sent into diffusion channel by different emission scheme and received by ligand-based receptors. Instantaneous and continuous emissions are two important molecule emission schemes in molecular communication. Up to now, very limited literatures consider the capacity in molecular communication with continuous emission. In this paper, we study the channel capacity of diffusion and ligand-based molecular communication system with continuous molecule emission scheme. We establish a basic diffusion-based propagation model based on the On-Off keying and time slot scheme. The capacity expression of the continuous emission scheme is derived with considering the effects of the channel memory and ligand-receptor binding mechanisms. The numerical results show that the channel capacity is bound up with the physical parameters of ligand-receptor and diffusion channel.
机译:分子通信是在纳米级沟通的有望范式,它受到自然的启发。可以通过不同的排放方案将分子送入扩散通道,并由基于配体的受体接收。瞬时和连续排放是分子通信中的两个重要分子发射方案。到目前为止,非常有限的文学考虑了分子通信的能力与连续发射。本文研究了连续分子排放方案的扩散和配体基分子通信系统的信道容量。我们基于开关键控和时隙方案建立基于基于基于的基于扩散的传播模型。考虑通道记忆和配体 - 受体结合机制的影响,推导出连续发射方案的容量表达。数值结果表明,信道容量与配体接收器和扩散通道的物理参数限制。

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