无线网络频谱高效跳频系统设计

Tongtong Li, Qi Ling, Jian Ren
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引用次数: 8

摘要

跳频系统已广泛应用于军事通信中,以防止敌方干扰、拦截和探测。在传统的跳频系统中,发射机按照预先设定的算法在可用的频率中以伪随机的方式跳频,接收机按照与发射机跳频模式精确同步的方式工作。在多址系统中,当多个用户同时在同一频段传输时,可能会发生碰撞。传统跳频系统的两个主要限制是:对频率采集/同步要求严格,频谱效率很低,对可用带宽的利用率很低。本文提出了一种新的无碰撞跳频(CFFH)概念。基于OFDM框架和安全子载波分配算法,所提出的CFFH系统可以通过无冲突多址实现高信息容量,并成功地解决了严格的同步限制。同时,由于每个用户仍然通过伪随机跳频方案进行传输,CFFH可以保持传统跳频系统固有的抗干扰、抗拦截的安全特性。所提出的CFFH方案可用于需要安全高速信息传输的民用和军用应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Spectrally Efficient Frequency Hopping System Design forWireless Networks
Frequency hopping systems have been widely used in military communications to prevent hostile jamming, interception and detection. In traditional frequency hopping (FH) systems, the transmitter hops in a pseudo-random manner among available frequencies according to a pre- specified algorithm, and the receiver operates accordingly in exact synchronization with the transmitter's hopping pattern. In multiple access systems, a collision may happen when more than one users transmit in the same frequency band simultaneously. Two major limitations with the conventional frequency hopping systems are: strict requirement on frequency acquisition/synchronization, and very low spectral efficiency due to inefficient utilization of the available bandwidth. In this paper, we introduce a new concept collision-free frequency hopping (CFFH). Based on the OFDM framework and the secure subcarrier assignment algorithm, the proposed CFFH system can achieve high information capacity through collision-free multiple access, and can successfully resolve the strict synchronization limitation. At the same time, as each user still transmits through a pseudo-random frequency hopping scheme, CFFH can maintain the inherent anti-jamming, anti-interception security features of the conventional FH system. The proposed CFFH scheme can be used for both civilian and military applications where secure high speed information transmission is needed.
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