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Filterbank Multicarrier and Multicarrier CDMA for Cognitive Radio Systems

机译:用于认知无线电系统的FilterBank多载波和多载波CDMA

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Recent works in cognitive radio (CR) have suggested multicarrier communication based on orthogonal frequency-division multiplexing (OFDM) for CR networks. In this paper, we propose two alternative multicarrier techniques. The first one, filterbank-based OFDM-OQAM (OFDM-offset quadrature amplitude modulation), allows to maximize the secondary users' spectral efficiency by eliminating the need for guard bands. Also, OFDM-OQAM's filterbank spectral estimator has greater dynamic range than the conventional fast fourier transform in OFDM, which further reduces the probability of undesirable collisions between the secondary users (SU) and primary users (PU). However, OFDM-OQAM still requires an SU base station for distributed sensing. For cases where such is not available, or when sensing information cannot be conveyed, we suggest another multicarrier technique, namely multicarrier code division multiple access (MC-CDMA). While MC-CDMA does not achieve comparably high spectral efficiency as OFDM-OQAM, the spreading gain of MC-CDMA results in graceful degradation in the case of collisions between PUs and SUs. Furthermore, compared to direct sequence (DS) CDMA, MC-CDMA allows to exclude narrowband PU interferers locally at the SU receiver, hence improving SU performance. We show that MC-CDMA makes it possible to operate the SU network without distributed sensing and hence no need for a base station infrastructure and/or a signaling channel.
机译:最近在认知无线电(CR)的作品已经基于CR网络的正交频分复用(OFDM)建议多载波通信。在本文中,我们提出了两种替代的多载波技术。第一个,滤波器基于DM-OQAM(OFDM-偏移正交幅度调制)允许通过消除对保护频带的需要来最大化二级用户的光谱效率。此外,OFDM-OQAM的滤波器频率估计器具有比OFDM中传统的快速傅里叶变换更大的动态范围,这进一步降低了辅助用户(SU)和主用户(PU)之间的不良碰撞的概率。然而,OFDM-OQAM仍然需要一个用于分布式感测的SU基站。对于此类不可用的情况,或者当无法传达感测信息时,我们建议另一个多载波技术,即多载波码分多址(MC-CDMA)。虽然MC-CDMA没有达到相当的高光谱效率作为OFDM-OQAM,但MC-CDMA的扩展增益导致PU和SUS碰撞的情况下的优雅降级。此外,与直接序列(DS)CDMA相比,MC-CDMA允许在SU接收器处局部排除窄带PU干扰,因此改善了SU性能。我们表明MC-CDMA使得可以在没有分布式感测的情况下操作SU网络,因此不需要基础站基础设施和/或信令信道。

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