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首页> 外文期刊>IEEE Transactions on Communications >Generalized Solution for the Demodulation of Reaction Shift Keying Signals in Molecular Communication Networks
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Generalized Solution for the Demodulation of Reaction Shift Keying Signals in Molecular Communication Networks

机译:分子通信网络中反应移位键控信号解调的通用解决方案

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This paper considers a diffusion-based molecular communication system, where the transmitter uses reaction shift keying (RSK) as the modulation scheme. We focus on the demodulation of RSK signal at the receiver. The receiver consists of a front-end molecular circuit and a back-end demodulator. The front-end molecular circuit is a set of chemical reactions consisting of multiple chemical species. The optimal demodulator computes the posteriori probability of the transmitted symbols given the history of the observation. The derivation of the optimal demodulator requires the solution to a specific Bayesian filtering problem. The solution to this Bayesian filtering problem had been derived for a few specific molecular circuits and specific choice(s) of observed chemical species. The derivation of such solution is also lengthy. The key contribution of this paper is to present a general solution to this Bayesian filtering problem, which can be applied to any molecular circuit and any choice of observed species.
机译:本文考虑一种基于扩散的分子通信系统,其中发射器使用反应移位键控(RSK)作为调制方案。我们专注于接收器对RSK信号的解调。接收器由前端分子电路和后端解调器组成。前端分子回路是一组由多种化学物质组成的化学反应。在给定观察历史的情况下,最佳解调器计算所传输符号的后验概率。最佳解调器的推导需要解决特定的贝叶斯滤波问题。贝叶斯过滤问题的解决方案是针对一些特定的分子回路和观察到的化学物种的特定选择而得出的。这种解决方案的推导也是冗长的。本文的主要贡献是为该贝叶斯过滤问题提供了一个通用的解决方案,该解决方案可以应用于任何分子回路和观察物种的任何选择。

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