利用扩频信号和智能天线增强安全无线通信系统的先进信号处理技术

S. El-Khamy
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引用次数: 0

摘要

本文概述了使用先进的信号处理方法来提高利用智能天线和扩频(SS)信号的安全无线通信系统的性能。重点介绍了作者及其课题组近十年来所取得的研究成果。采用先进的信号处理技术可以极大地提高智能天线和SS技术在限制干扰和宽带多用户无线通信系统中的性能。所考虑的先进信号处理技术包括人工神经网络(ANN),小波,高阶统计(HOS)和相关的常模算法(CMA),遗传算法(GA)和分形。在演讲中,简要描述了使用现代信号处理技术的智能天线的以下增强:i.使用人工神经网络来塑造阵列因子,降低副瓣电平并影响可操纵的干扰消零。2利用HOS对一般天线阵列结构下的多源多径信号进行盲波束形成和检测。3使用CMA来减轻多径和衰落效应。小波在旁瓣对消和宽带波束形成阻塞矩阵设计中的应用。5、采用遗传算法进行智能宽带阵列设计。另一方面,使用现代信号处理方法的SS信号的以下增强将在演示中得到强调:i.使用人工神经网络设计匹配滤波器(NMF)以实现有效的代码采集,并在ii的多用户接收器设计中使用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Advanced Signal Processing Techniques for the Enhancement of Secure Wireless Communication Systems Utilizing Spread-Spectrum Signaling and Smart Antennas
The use of advanced signal processing approaches for improving the performance of secure wireless communication systems utilizing Smart Antennas and Spread Spectrum (SS) signaling is overviewed in this paper,. Emphasis is placed on research results obtained by the author and his research group in the last decade. Using advanced signal processing is shown to highly improve the performance of Smart Antennas and SS techniques in interference limited and wideband multi-user wireless communication systems. The considered advanced signal processing techniques include Artificial Neural Networks (ANN), Wavelets, Higher Order Statistics (HOS) and the related constant Modulus Algorithms (CMA), Genetic Algorithms (GA) and Fractals. In the presentation, the following enhancements of Smart Antenna using modern signal processing techniques are briefly described: i. Using ANN to shape the Array factor, reduce the side-lobe level and affect steerable interference nulling. ii. The use of HOS for blind beamforming and detection of multi-Source multipath signals with general antenna array structures. iii. The use of CMA for mitigating multipath and fading effects. iv. The use of Wavelets in the design of blocking matrix for sidelobe cancellers and for broadband beamforming. v. Using GA for smart and wideband array design. vi. The design of Fractal Arrays for multiband operation On the other hand, the following enhancements of SS signaling using modern signal processing approaches will be highlighted in the presentation: i. The use of ANN for the design of Matched filters (NMF) for efficient code acquisition and in the design multi-user receivers for ii.
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