Md Mustam Saizalmursidi, Syed-Yusof Sharifah K, Zubair Suleiman
IEEE Trans Nanobioscience. 2016 Oct;15(7):599-612. doi: 10.1109/TNB.2016.2631240. Epub 2016 Nov 21.
In nanoscale communication, diffusion-based molecular communication (DBMC) in which information is encoded into molecule patterns by a transmitter nanomachine, has emerged as a promising communication system, particularly for biomedical and healthcare applications. Although, numerous studies have been conducted to evaluate and analyze DBMC systems, investigation on DBMC system through a multilayer channel has received less attention. The aims of this paper are to formulate channel characteristics and to evaluate the performance of multilayer DBMC channel in terms of delay spread and capacity. In this paper, the propagation of molecules over an n- layer channel is assumed to follow the Brownian motion and subjected to Fick's law of diffusion. Fourier transform is used to convert time to frequency domain functions. Besides, the multilayer channel is considered as a linear and deterministic channel. For the performance evaluation, the air-water-blood plasma medium representing the simplified multilayer diffusion model in the respiratory system was chosen. It was found that a high channel capacity can be achieved with wide transmission bandwidth, short transmission distance, and high averaged transmitted power. In addition, the findings showed that channel delay spread increases as both the transmission distance, and the pulse duration increased. By setting the symbol duration greater than the pulse duration or delay spread, an inter-symbol interference problem due to previous molecules transmission can be mitigated. These findings can be used as a guide in the development and fabrication of future artificial nanocommunication and nanonetworks systems involving multilayer transmission medium.
在纳米尺度通信中,基于扩散的分子通信(DBMC)已成为一种很有前景的通信系统,在这种通信方式中,信息由发射纳米机器编码为分子模式,尤其适用于生物医学和医疗保健应用。尽管已经开展了大量研究来评估和分析DBMC系统,但通过多层信道对DBMC系统的研究却较少受到关注。本文的目的是确定信道特性,并从延迟扩展和容量方面评估多层DBMC信道的性能。本文假设分子在n层信道上的传播遵循布朗运动,并服从菲克扩散定律。利用傅里叶变换将时间函数转换为频域函数。此外,将多层信道视为线性确定性信道。为了进行性能评估,选择了代表呼吸系统中简化多层扩散模型的空气-水-血桨介质。研究发现,通过宽传输带宽、短传输距离和高平均发射功率可以实现高信道容量。此外,研究结果表明,信道延迟扩展随着传输距离和脉冲持续时间的增加而增大。通过将符号持续时间设置为大于脉冲持续时间或延迟扩展,可以减轻由于先前分子传输导致的符号间干扰问题。这些研究结果可作为未来涉及多层传输介质的人工纳米通信和纳米网络系统开发与制造的指导。