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扩散移动分子通信的初始距离估计与信号检测

Initial Distance Estimation and Signal Detection for Diffusive Mobile Molecular Communication.

作者信息

Huang Shuai, Lin Lin, Guo Weisi, Yan Hao, Xu Juan, Liu Fuqiang

出版信息

IEEE Trans Nanobioscience. 2020 Jul;19(3):422-433. doi: 10.1109/TNB.2020.2986314. Epub 2020 Apr 7.

Abstract

Mobile molecular communication (MC) attracts much attention in recent years where mobile nanomachines exchange information using molecules. In this paper, we consider a diffusion-based mobile MC system consisting of a pair of diffusive nanomachines. Due to the Brownian motion of nanomachines, the communication distance between the transmitter and the receiver is dynamic. Thus, the channel impulse response (CIR) is a stochastic process. The stochastic CIR brings the difficulty in the detection process. Contrast to the common static MC characterized by the deterministic CIR, in a mobile MC system, the receiver needs to estimate the dynamic distance for CIR reconstruction and detection threshold setting at each bit interval, which achieve high computational complexity. To tackle these difficulties, a new detection technique for mobile MC is proposed in this paper. It is unnecessary to estimate the dynamic communication distance at each bit interval. Instead, the receiver estimates the initial distance between it and the transmitter. The estimated initial distance can be used to reconstruct the statistical characteristics of CIR, setting detection threshold for all the bit intervals in advance. To achieve this goal, a novel two-step scheme based on maximum likelihood (ML) is proposed to estimate the initial distance. In the first step, the transmitter releases some molecules as a pilot signal before the information bits transmission. Then the receiver estimates releasing distance by observations of received signal. In the second step, the estimated value obtained in the previous step is used to estimate the initial distance by ML estimation. The performances of proposed two-step scheme and the detection technique are evaluated via particle-based simulation of the Brownian motion.

摘要

近年来,移动分子通信(MC)备受关注,其中移动纳米机器利用分子来交换信息。在本文中,我们考虑一个基于扩散的移动MC系统,该系统由一对扩散型纳米机器组成。由于纳米机器的布朗运动,发射机和接收机之间的通信距离是动态的。因此,信道冲激响应(CIR)是一个随机过程。这种随机的CIR给检测过程带来了困难。与以确定性CIR为特征的常见静态MC不同,在移动MC系统中,接收机需要在每个比特间隔估计动态距离,以进行CIR重建和检测阈值设置,这导致了很高的计算复杂度。为了解决这些困难,本文提出了一种用于移动MC的新检测技术。无需在每个比特间隔估计动态通信距离。相反,接收机估计它与发射机之间的初始距离。估计出的初始距离可用于重建CIR的统计特性,提前为所有比特间隔设置检测阈值。为实现这一目标,提出了一种基于最大似然(ML)的新颖两步方案来估计初始距离。第一步,发射机在信息比特传输之前释放一些分子作为导频信号。然后接收机通过对接收到的信号进行观测来估计释放距离。第二步,用上一步得到的估计值通过ML估计来估计初始距离。通过基于布朗运动的粒子模拟对所提出的两步方案和检测技术的性能进行了评估。

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