Modulation and Signal Detection for Diffusive-Drift Molecular Communication with a Mobile Receiver

Xuening Liao, Zhen Jia, Zhenqiang Wu, Bo Liu, Xinlei Wang, Xiaohong Jiang
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引用次数: 2

Abstract

Molecular communication (MC), which allows nanomachines to communicate with each other by using chemical molecules, is considered to be a promising method for communications in liquid environment. Available works on MC mainly focus on modulation and signal detection schemes for MC systems with fixed nanomachines, i.e., fixed molecular communication (FMC) systems. However, the more complex systems with mobile nanomachines (i.e., mobile molecular communication (MMC) systems) have been largely unexplored. This paper considers a MMC system with a fixed transmitter and a mobile receiver communicating over diffusive-drift channels of a limited boundary. We first propose a new modulation scheme to address the issue of misalignment in the signal detection of MMC systems by adopting three types of molecules in the signal modulation and modulating the transmitted signals into blocks with equal length to avoid the transferring of a signal error in the current block on the signal detection in other blocks. We then propose a new signal detection scheme of the MMC systems by calculating the distance between the transmitter and the receiver based on a distance prediction method and detecting signals at the receiver based on the decided adaptive concentration threshold in each time interval. To verify the efficiency of our proposed scheme, we then conducted extensive simulations by the Monte Carlo simulation, and comparisons are also made among our proposed schemes, a well-known fixed threshold signal detection scheme, the CATD scheme, the PAD scheme, and a low complexity signal detection scheme for MMC systems in terms of the BER (bit error rate). Results show that our proposed schemes can outperform these schemes regarding the BER.
移动接收机扩散漂移分子通信的调制和信号检测
分子通信(Molecular communication, MC)是一种很有前途的液体环境通信方法,它允许纳米机器利用化学分子相互通信。现有的分子通信研究主要集中在固定纳米结构的分子通信系统(即固定分子通信系统)的调制和信号检测方案。然而,具有移动纳米机器的更复杂的系统(即移动分子通信(MMC)系统)在很大程度上尚未被探索。本文研究了具有固定发射机和移动接收机在有限边界扩散漂移信道上通信的MMC系统。为了解决MMC系统信号检测中的错位问题,我们首先提出了一种新的调制方案,即在信号调制中采用三种类型的分子,将传输的信号调制成等长度的块,以避免将当前块中的信号错误转移到其他块的信号检测上。然后,我们提出了一种新的MMC系统信号检测方案,该方案基于距离预测方法计算发射机与接收机之间的距离,并根据确定的自适应浓度阈值在每个时间间隔内检测接收机处的信号。为了验证我们提出的方案的有效性,我们随后通过蒙特卡罗模拟进行了大量的仿真,并比较了我们提出的方案与众所周知的固定阈值信号检测方案、CATD方案、PAD方案以及MMC系统的低复杂度信号检测方案在误码率方面的差异。结果表明,我们提出的方案在误码率方面优于这些方案。
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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