基于混沌的DSSS和FHSS多用户通信系统性能研究

Nikolajs Hasjuks, H. Hellbruck, A. Aboltins
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引用次数: 0

摘要

具有大量节点的无线传感器网络(wsn)的部署已经恢复了对扩频(SS)技术的兴趣,因为它们允许用简单的硬件和有限的功率预算为节点建立多重访问。混沌扩频是提高网络安全性和降低多址干扰的研究领域之一。本研究旨在对采用基于混沌的扩频码的二进制直接序列扩频(DSSS)和跳频扩频(FHSS)通信系统的性能提供新的信息,并将其与采用m序列的经典系统进行比较。与现有的研究不同,本研究是基于具有上/下转换和各自滤波的通带通信系统的仿真。给出了在加性高斯白噪声(AWGN)信道下,不同用户数下的误码率(BER)与信噪比(SNR)的性能比较以及用户间载波频偏对MAI的依赖。所获得的结果突出了基于混沌序列的二进制DSSS和FHSS系统比经典解决方案具有优势的几个场景。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Performance study of chaos-based DSSS and FHSS multi-user communication systems
Deployment of wireless sensor networks (WSNs) with a large number of nodes have reinstated interest in spread spectrum (SS) technologies as they allow to establish multiple access for nodes with simple hardware and limited power budget. Chaotic spreading is one of the still insufficiently explored areas which can lead to higher security and lower multiple access interference (MAI). This research is intended to bring new information about the performance of binary direct sequence spread spectrum (DSSS) and frequency hopping spread spectrum (FHSS) communication systems which employ chaos-based spreading codes and compare them against classical systems employing m-sequences. Unlike existing research, this investigation is based on the simulation of passband communication systems with up/down-conversion and respective filtering. Performance comparison in terms of bit error ratio (BER) versus signal-to-noise ratio (SNR) at the different number of users and MAI dependence on carrier frequency offset among users in case of additive white Gaussian noise (AWGN) channel are presented. Obtained results highlight several scenarios where chaotic-sequences-based binary DSSS and FHSS systems have advantages over classical solutions.
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