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Molecular communication with Brownian motion and a positive drift: performance analysis of amplitude modulation schemes

机译:具有布朗运动和正漂移的分子通信:幅度调制方案的性能分析

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摘要

In this study, the authors consider molecular communication between two nanomachines placed in a fluid medium for three different amplitude modulation schemes. The number of molecules transmitted represents the amplitude levels for these schemes. Each molecule released by the transmitter travels with Brownian motion and a positive drift to reach the receiver nanomachine. They consider a time slotted channel, where the information in every slot is corrupted by stray molecules from the previous slots. The capacity of such a molecular communication channel is investigated for all the three modulation schemes. Analytical expressions for the end-to-end symbol error probability are derived, considering maximum likelihood detection at the receiver. Numerical results indicate that arbitrarily low probabilities of error can be achieved for high drift velocities. An increase in the slot length further improves the performance, albeit at the cost of data rate. The results also demonstrate the improvements offered by the amplitude modulation schemes over the previously proposed time modulation schemes.
机译:在这项研究中,作者考虑了用于三种不同幅度调制方案的放置在流体介质中的两个纳米机器之间的分子连通。传输的分子数表示这些方案的振幅水平。发射器释放的每个分子都以布朗运动和正漂移行进,到达接收器纳米机。他们考虑了一个时隙信道,其中每个时隙中的信息都会被先前时隙中的杂散分子破坏。对于所有三种调制方案,都研究了这种分子通信通道的容量。考虑到在接收机处的最大似然检测,得出了端到端符号错误概率的解析表达式。数值结果表明,对于高漂移速度,可以实现任意低的误差概率。尽管以数据速率为代价,但是时隙长度的增加进一步提高了性能。结果还证明了幅度调制方案比以前提出的时间调制方案所提供的改进。

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  • 来源
    《Communications, IET》 |2014年第14期|2413-2422|共10页
  • 作者

    Singhal A.; Mallik R.K.; Lall B.;

  • 作者单位

    Department of Electrical Engineering, Indian Institute of Technology - Delhi, Hauz Khas, New Delhi 110016, India;

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  • 正文语种 eng
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