Superbroadband channel of communication systems

V. Siddrenko
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Abstract

At present, in the digital radio communication field with traditional methods of channel division ( time and frequency), there are code methods of channel division based on spread spectrum signals. The spread spectrum signals, or noise-like signals (NLS), potentially provide more effective utilization of the frequency band in multichannel communication systems. That is the determining factor for the development prospects of digital communication. The development of NLS formation and optimum reception devices for digital communication networks requires the solution of complex theoretical, technological and technical problems. We offer for consideration ways of formation and quasi optimum receiving of spread spectrum signals based on a combination of functional acousto-electronics methods and specialized signal processors. Our experimental researches of superbroadband communication links have confirmed the serviceability of equipment for NLS formation and reception with spectrum width up to 100 MHz and base /spl sim/3000. The offered method of superbroadband NLS formation and reception with large bases can be now used for developing communication systems with channel code division.
通信系统的超宽带信道
目前,在采用传统信道划分方法(时间和频率)的数字无线电通信领域,出现了基于扩频信号的编码信道划分方法。在多信道通信系统中,扩频信号或类噪声信号(NLS)可能提供更有效的频带利用。这是决定数字通信发展前景的因素。数字通信网络NLS形成和最佳接收装置的发展需要解决复杂的理论、技术和技术问题。我们提出了基于功能性声电子方法和专用信号处理器相结合的扩频信号形成和准最佳接收方法。我们对超宽带通信链路的实验研究已经证实了设备在频谱宽度高达100mhz、基/spl sim/3000的NLS形成和接收方面的适用性。本文提出的超大基数超宽带NLS形成和接收方法可用于开发信道分码通信系统。
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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