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首页> 外文期刊>Communications Letters, IEEE >Distance Estimation Schemes for Diffusion Based Molecular Communication Systems
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Distance Estimation Schemes for Diffusion Based Molecular Communication Systems

机译:基于扩散的分子通信系统的距离估计方案

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Molecule concentration is often used as the information carrier to accomplish diffusion-based molecular communications (DMC) among nano-machines. To achieve the optimal functionality, knowing the distance between the transmitter nano-machine (TN) and the receiver nano-machine (RN) is of high importance. In this paper, two distance estimation schemes are proposed based upon the RN-sensed concentration which changes with regards to the time and distance. The RN estimates the distance by means of measuring either the concentration-peak time or received concentration energy. Simulations are performed to compare the accuracy of each scheme and to discover how the diffusion channel and noise may influence the accuracy. Results show that both schemes will provide a beneficial enhancement to molecular communication systems.
机译:分子浓度通常用作信息载体,以在纳米机器之间完成基于扩散的分子通信(DMC)。为了实现最佳功能,了解发射器纳米机(TN)和接收器纳米机(RN)之间的距离非常重要。在本文中,基于RN感应的浓度随时间和距离而变化,提出了两种距离估计方案。 RN通过测量浓度峰值时间或接收到的浓度能量估算距离。进行仿真以比较每种方案的精度,并发现扩散通道和噪声如何影响精度。结果表明,两种方案都将为分子通信系统提供有益的增强。

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