School of Medical Science & Technology, IIT Kharagpur, Kharagpur 721302, India.
Electronics and Communication Engineering Department, Thapar Institute of Engineering and Technology, Patiala 147001, India.
Biosensors (Basel). 2021 Feb 27;11(3):65. doi: 10.3390/bios11030065.
Molecular communication is a bioinspired communication that enables macro-scale, micro-scale and nano-scale devices to communicate with each other. The molecular communication system is prone to severe signal attenuation, dispersion and delay, which leads to performance degradation as the distance between two communicating devices increases. To mitigate these challenges, relays are used to establish reliable communication in microfluidic channels. Relay assisted molecular communication systems can also enable interconnection among various entities of the lab-on-chip for sharing information. Various relaying schemes have been proposed for reliable molecular communication systems, most of which lack practical feasibility. Thus, it is essential to design and develop relays that can be practically incorporated into the microfluidic channel. This paper presents a novel design of passive in-line relay for molecular communication system that can be easily embedded in the microfluidic channel and operate without external energy. Results show that geometric modification in the microfluidic channel can act as a relay and restore the degraded signal up-to 28%.
分子通信是一种受生物启发的通信方式,使宏观、微观和纳米尺度的设备能够相互通信。分子通信系统容易受到严重的信号衰减、色散和延迟的影响,这导致随着两个通信设备之间的距离增加,性能下降。为了减轻这些挑战,中继器被用于在微流道中建立可靠的通信。中继辅助分子通信系统还可以实现片上实验室各种实体之间的互联,以共享信息。已经提出了各种用于可靠分子通信系统的中继方案,但大多数方案缺乏实际可行性。因此,设计和开发可以实际集成到微流道中的中继器是至关重要的。本文提出了一种用于分子通信系统的新型无源在线中继设计,该设计可以很容易地嵌入微流道中,并在没有外部能量的情况下运行。结果表明,微流道中的几何修改可以充当中继器,将退化的信号恢复高达 28%。