Noise modeling of nanomechanical communication systems

Ahmed O. Nasif, M. Mahfuz, Jagadeep Thota
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引用次数: 1

Abstract

In a recent paper [2], we introduced a framework for performing nanomechanical communication, where nanomechanical systems can communicate using mechanical movements to encode and transfer information between a transmitter (TX) and a receiver (RX). The framework considered in [2] was mainly focused on the deterministic model, which is the noise-free case. It was shown that the encoding of movements or motions is key to the transfer of information. In this paper, we address how noise affects such a communication system. We introduce two modes of NMC: synchronous versus asynchronous. We show that synchronous mode can achieve higher transmission rates compared to asynchronous mode. As an example, the symbol error rate expression for a transmitter-receiver pair with 4 degrees of motion is given by analyzing the different motion state transitions.
纳米机械通信系统的噪声建模
在最近的一篇论文[2]中,我们介绍了一种用于执行纳米机械通信的框架,其中纳米机械系统可以使用机械运动进行通信,以在发射器(TX)和接收器(RX)之间编码和传输信息。[2]中考虑的框架主要集中在确定性模型,即无噪声情况下。结果表明,运动或动作的编码是信息传递的关键。在本文中,我们讨论了噪声如何影响这样的通信系统。我们介绍两种NMC模式:同步模式和异步模式。我们表明,与异步模式相比,同步模式可以实现更高的传输速率。以4度运动的收发对为例,通过对不同运动状态转换的分析,给出了其误码率表达式。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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