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首页> 外文期刊>EURASIP journal on advances in signal processing >Secure collision-free frequency hopping for ofdma-based wireless networks
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Secure collision-free frequency hopping for ofdma-based wireless networks

机译:基于OFMA的无线网络的安全无冲突跳频

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摘要

This paper considers highly efficient antijamming system design using secure dynamic spectrum access control. First, we propose a collision-free frequency hopping (CFFH) system based on the OFDMA framework and an innovative secure subcarrier assignment scheme. The CFFH system is designed to ensure that each user hops to a new set of subcarriers in a pseudorandom manner at the beginning of each hopping period, and different users always transmit on nonoverlapping sets of subcarriers. The CFFH scheme can effectively mitigate the jamming interference, including both random jamming and follower jamming. Moreover, it has the same high spectral efficiency as that of the OFDM system and can relax the complex frequency synchronization problem suffered by conventional FH. Second, we enhance the antijamming property of CFFH by incorporating the space-time coding (STC) scheme. The enhanced system is referred to as STC-CFFH. Our analysis indicates that the combination of space-time coding and CFFH is particularly powerful in eliminating channel interference and hostile jamming interference, especially random jamming. Simulation examples are provided to illustrate the performance of the proposed schemes. The proposed scheme provides a promising solution for secure and efficient spectrum sharing among different users and services in cognitive networks.
机译:本文考虑了使用安全动态频谱访问控制的高效抗干扰系统设计。首先,我们提出了一种基于OFDMA架构的无冲突跳频(CFFH)系统和一种创新的安全子载波分配方案。 CFFH系统旨在确保每个用户在每个跳变周期开始时以伪随机方式跳到一组新的子载波,并且不同的用户总是在不重叠的子载波集上进行传输。 CFFH方案可以有效缓解干扰干扰,包括随机干扰和随动干扰。而且,它具有与OFDM系统相同的高频谱效率,并且可以缓解常规FH所遭受的复杂频率同步问题。其次,我们通过合并空时编码(STC)方案来增强CFFH的抗干扰性能。增强的系统称为STC-CFFH。我们的分析表明,时空编码和CFFH的组合在消除信道干扰和敌对干扰干扰(尤其是随机干扰)方面特别强大。提供了仿真示例来说明所提出方案的性能。所提出的方案为认知网络中不同用户和服务之间的安全有效频谱共享提供了一种有希望的解决方案。

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