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首页> 外文期刊>IEEE communications letters >Diffusion-Based Multiple Access by Nano-Transmitters to a Micro-Receiver
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Diffusion-Based Multiple Access by Nano-Transmitters to a Micro-Receiver

机译:纳米发射器对微接收器的基于扩散的多路访问。

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摘要

Interaction with a biological system can be enhanced by embedding nano-scale devices into the biological system and externally gathering data from and/or controlling the nano-scale devices. One potential approach to interact with such nano-scale devices is through intermediate micro-scale devices which communicate by molecular communication with the nano-scale devices. Multiple nano-scale devices transmit a type of molecule to represent bits of information and a micro-scale device decodes information from the concentration characteristics of the type of molecule. Since diffusion is a slow process, transmissions interfere and statistical methods can be applied to the detected concentration to more successfully receive bits. We model information transmission from nano-scale devices to the micro-scale receiver. We then numerically examine the impact of varying transmitter scheduling and signal strength on the bit error rate.
机译:通过将纳米级设备嵌入生物系统并从纳米级设备外部收集数据和/或控制该纳米级设备,可以增强与生物系统的相互作用。与这样的纳米级装置相互作用的一种潜在方法是通过中间的微级装置,其通过与纳米级装置的分子通信来通信。多个纳米级设备传输一种分子来表示信息位,而微尺度设备则根据该分子类型的浓度特征对信息进行解码。由于扩散是一个缓慢的过程,因此传输会受到干扰,并且可以将统计方法应用于检测到的浓度以更成功地接收比特。我们对从纳米级设备到微型接收机的信息传输进行建模。然后,我们以数字方式检查变化的发射机调度和信号强度对误码率的影响。

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