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Evaluation of Molecular Oscillation for Nanonetworks Based on Quorum Sensing

机译:基于群体感应的纳米网络分子振荡评价

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Bio-inspired molecular communication is a novel kind of communication technology, which uses biochemical molecules as the information carrier. Single nanomachine has limited ability to accomplish targeted goals, so a nanonetwork, which is composed of interconnected nanomachines, is expected. To perform cooperative operations in a nanonetwork, the synchronization among nanomachines is essential. With this purpose, we propose a simple quorum-sensing-based oscillation model. By using the proposed methodology, the instantaneous emission of molecules in quorum sensing is modeled and evaluated. The self-excited oscillation can occur when the molecular concentration decreases below a certain threshold. Analysis and simulations are performed to determine how the biological attributes of the nanomachines, the threshold, the distance between nanomachines and the dimension of the simulation space impact the periods and the phases of the oscillation.
机译:受生物启发的分子通信是一种新型的通信技术,它利用生化分子作为信息载体。单个纳米机器完成目标目标的能力有限,因此可以预期到由相互连接的纳米机器组成的纳米网络。为了在纳米网络中执行协作操作,纳米机器之间的同步至关重要。为此,我们提出了一个简单的基于群体感应的振荡模型。通过使用所提出的方法,对群体感应中分子的瞬时发射进行建模和评估。当分子浓度降低到某个阈值以下时,可能会发生自激振荡。进行分析和模拟以确定纳米机器的生物学属性,阈值,纳米机器之间的距离以及模拟空间的尺寸如何影响振荡的周期和相位。

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