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High-accuracy distance estimation for molecular communication systems via diffusion

机译:通过扩散的分子通信系统的高精度距离估计

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摘要

The advancement in nanotechnology has promoted the development of molecular communication. Nano-devices can communicate with each other by molecular communication at the nano- or micro-scale. The distance between the nanomachines is an important parameter in the molecular communication system. It is needed in the clock synchronization protocol, the transmission rate optimization, etc. In this paper, we propose a high-accuracy protocol for estimating distance based on maximum likelihood estimation (MLE). The receiver nanomachine estimates the distance by sampling the concentration from multiple symbols. The inter-symbol interference (ISI) and additive noise are considered. The Newton-Raphson method is used to calculate the estimated distance. The performance of the proposed protocol is evaluated by simulations in MATLAB. The results show that the proposed scheme achieves good performance in the ISI scenario compared with the existing schemes in terms of accuracy, but in the sacrifice of more computational resources. (C) 2018 Published by Elsevier B.V.
机译:纳米技术的进步促进了分子通信的发展。纳米器件可以通过纳米或微级的分子通信彼此通信。纳米机之间的距离是分子通信系统中的重要参数。在时钟同步协议,传输速率优化等中需要。在本文中,我们提出了一种基于最大似然估计(MLE)的估计距离的高精度协议。接收器纳米载荷通过从多个符号采样浓度来估计距离。考虑符号间干扰(ISI)和添加噪声。 Newton-Raphson方法用于计算估计距离。通过MATLAB的模拟评估所提出的协议的性能。结果表明,该方案在ISI情景中实现了良好的性能,与现有方案在准确性方面相比,但在牺牲更多计算资源方面。 (c)2018由elestvier b.v出版。

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