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Measuring Distance From Single Spike Feedback Signals in Molecular Communication

机译:在分子通信中测量单峰反馈信号的距离

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摘要

Systems of bionanomachines may benefit future applications which require interaction with biological systems at the nano- to microscale. Molecular communication is a suitable communication mechanism for autonomous bionanomachines which are limited in size and capability and for interfacing with biological systems. In molecular communication, a bionanomachine transmits information to a receiver bionanomachine by modulating the concentration of molecules in the environment. One promising direction for molecular communication is for a bionanomachine to measure the distance to another bionanomachine in order to perform location-based functionality or to adapt communications using the measured distance. In this paper, a bionanomachine measures the distance to another bionanomachine by requesting the other bionanomachine to transmit a feedback signal of many molecules transmitted over a short time interval (i.e., a single spike of molecules). Upon receiving the feedback signal, the bionanomachine which requested the feedback signal then estimates distance by measuring the Round Trip Time (RTT) or Signal Attenuation (SA) of the received feedback signal. The propagation of molecules and the receiving of molecules are modeled to investigate how distance impacts measured RTT and SA. Simulations are performed to measure the accuracy of the distance measurement, the time required to measure distance, and how the number of molecules transmitted affects accuracy.
机译:仿生机器的系统可能会有益于未来的应用程序,这些应用程序需要与纳米到微米级的生物系统相互作用。分子通信是自主生物仿生机器的一种合适的通信机制,其尺寸和能力受到限制,并且可以与生物系统接口。在分子通信中,仿生机器通过调节环境中分子的浓度将信息传输到接收者仿生机器。分子通信的一个有希望的方向是生物纳米机器测量到另一生物纳米机器的距离,以执行基于位置的功能或使用所测量的距离适应通信。在本文中,仿生机器通过请求另一个仿生机器传输在短时间间隔内传输的许多分子的反馈信号(即单个分子尖峰)来测量与另一仿生机器的距离。在接收到反馈信号后,请求反馈信号的仿生机器随后通过测量接收到的反馈信号的往返时间(RTT)或信号衰减(SA)来估计距离。对分子的传播和分子的接收进行建模,以研究距离如何影响测得的RTT和SA。进行仿真以测量距离测量的准确性,测量距离所需的时间以及传输的分子数量如何影响准确性。

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