On the capacity achieving probability measures for molecular receivers

Mehrdad Tahmasbi, F. Fekri
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引用次数: 10

Abstract

In this paper, diffusion-based molecular communication with ligand receptor receivers is studied. Information messages are assumed to be encoded via variations of the concentration of molecules. The randomness in the ligand reception process induces uncertainty in the communication; limiting the rate of information decoding. We model the ligand receptor receiver by a set of finite-state Markov channels and study the general capacity of such a receiver. Furthermore, the i.i.d. capacity of the receiver is characterized as a lower bound for the general capacity. It is also proved that a finite support probability measure can achieve the i.i.d. capacity of the receiver. Moreover, a bound on the number of points in the support of the probability measure is obtained.
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分子受体的容量实现概率测度
本文研究了基于扩散的配体受体分子通信。信息信息被认为是通过分子浓度的变化来编码的。配体接收过程的随机性导致了信息传递的不确定性;限制了信息解码的速率。我们用一组有限状态马尔可夫通道来模拟配体受体接收器,并研究了这种接收器的一般容量。此外,接收机的i.i.d容量被表征为一般容量的下界。证明了有限支持概率测度可以实现接收机的识别能力。此外,还得到了支持该概率测度的点的个数的界限。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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