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Addressing by beacon coordinates using molecular communication

机译:使用分子通讯通过信标坐标进行寻址

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A transmitter nanomachine performs molecular communication to transmit information to a receiver nanomachine using molecules (e.g. calcium ions, DNA) as the transmission medium. Existing approaches use the type of molecule to address receivers within a local broadcast area. In the proposed system, molecular beacons provide distance measurements using molecular communication to establish a coordinate system (e.g. molecular beacons form a concentration gradient using a few types of beacon molecules). Transmitters then address a receiver at a location by the distance from the receiver to each beacon. A transmitter communicates by encapsulating information into a molecular device capable of active transport and distance measurement (e.g. a bacterium performs chemotaxis to a location with the corresponding concentrations of each type of beacon molecule). This paper describes a model of the proposed system, simulation model for the example of bacterial chemotaxis, and measurement of success rate and delay.
机译:发射器纳米载荷用分子通信使用分子(例如钙离子,DNA)作为传输介质将信息传送到接收器纳米载荷。现有方法使用分子类型来在本地广播区域内寻址接收器。在所提出的系统中,分子信标提供使用分子通信来建立坐标系的距离测量(例如,分子信标使用几种类型的信标分子形成浓度梯度)。然后,发射机通过从接收器到每个信标的距离在位置处地址接收器。发射机通过将信息封装到能够有源传输和距离测量的分子器件中通信(例如,细菌对具有每种类型的信标分子的相应浓度的培养物进行趋化性)。本文介绍了拟议的系统,用于细菌趋化性的仿真模型的模型,以及测量成功率和延迟的测量。

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