A receiver architecture for pulse-based electromagnetic nanonetworks in the Terahertz Band

R. G. Cid-Fuentes, J. Jornet, I. Akyildiz, E. Alarcón
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引用次数: 39

Abstract

Graphene-enabled wireless communications set the Terahertz Band as the frequency band of operation of future nanodevices (0.1-10 THz). Amongst others, femtosecond-long pulse-based modulation schemes have been recently proposed to enable the communication among nanodevices. Within this context, a receiver architecture suitable for nanodevices must be ultra compact, must have high sensitivity and must be ultra-low power. Unfortunately, common receiver architectures used in other communication schemes, such as IR-UWB, show a strong compromise between low complexity and performance. In this paper, a novel receiver architecture for pulse-based communication based on a Continuous-time Moving Average (CTMA) symbol detection scheme is presented. This scheme bases its symbol decision on the received signal power maximum peak after the CTMA, which is implemented with a single low-pass filter. Moreover, an analytical model for the symbol detection is provided and it is quantitatively shown that the proposed CTMA scheme outperforms previous symbol detection schemes for pulse-based modulations in terms of Symbol Error Rate (SER). The low complexity and relaxed synchronization needed for this symbol detector makes this structure specially suited for the development of future transceivers for nano-devices.
一种用于太赫兹波段脉冲电磁纳米网络的接收器架构
石墨烯支持的无线通信将太赫兹波段设置为未来纳米器件的工作频带(0.1-10太赫兹)。其中,最近提出了飞秒长脉冲调制方案,以实现纳米器件之间的通信。在这种情况下,适合纳米器件的接收器架构必须超紧凑,必须具有高灵敏度和超低功耗。不幸的是,在其他通信方案(如IR-UWB)中使用的普通接收器架构在低复杂性和性能之间表现出强烈的折衷。本文提出了一种基于连续时间移动平均(CTMA)符号检测的脉冲通信接收机结构。该方案基于CTMA后接收到的信号功率最大峰值进行符号判定,该方案采用单个低通滤波器实现。此外,给出了符号检测的分析模型,并定量地表明,所提出的CTMA方案在符号误差率(SER)方面优于先前的基于脉冲调制的符号检测方案。这种符号探测器所需的低复杂性和宽松的同步使这种结构特别适合于未来纳米器件收发器的开发。
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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