NC-OFDM的盲同步——当“信道”是惯例而不是强制时

D. Saha, A. Dutta, D. Grunwald, D. Sicker
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引用次数: 13

摘要

最近在提供授权频谱供二次使用方面的努力开辟了新的机会,并重新定义了频谱共享的含义。频谱共享需要将多个不同宽度的不连续频带聚合成一个网络进行通信。它们不应该限制对固定宽度窄带信道的频谱访问,而应该被视为高度灵活的约定,并允许在具有不同收发器功能的各种异构设备之间同时进行多用户通信。非连续正交频分复用(NC-OFDM)是一种物理层技术,可以用来实现这一目标。与连续信道化访问模型不同,宽带非连续访问具有同步的关键挑战。在本文中,我们提出了一种实用的算法和硬件实现来克服这一挑战。配备此盲同步器,我们提出了一种介质访问控制(MAC)层设计,以实现灵活的信道访问,同时实现与现有和其他次要异构网络共存。盲同步技术极大地简化了辅助网络中的信道交会,并提供了更快的空频谱迁移。通过在不同信噪比(SNR)和频谱占用下的广泛模拟,我们展示了在认知无线电中用于NC-OFDM同步的现有算法的显著改进,并使宽带认知无线电网络在不久的将来成为一种明显的可能性。
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Blind synchronization for NC-OFDM — When “channels” are conventions, not mandates
Recent efforts in making licensed spectrum available for secondary use have opened up new opportunities and has redefined the meaning of sharing spectrum. Sharing spectrum requires aggregation of multiple non-contiguous bands of varying width to communicate as a network. Rather than limiting spectrum access to fixed width narrowband channels, they should be treated as conventions that are highly flexible and allow for simultaneous multi-user communication among a variety of heterogeneous devices with different transceiver capabilities. Non-Contiguous Orthogonal Frequency Division Multiplexing (NC-OFDM) is a physical layer technique that can be utilized to achieve this goal. Unlike the contiguous channelized access model, wideband non-contiguous access posses a critical challenge of synchronization. In this paper, we propose a practical algorithm and hardware implementation to overcome this challenge. Equipped with this blind synchronizer, we propose a Medium Access Control (MAC) layer design to enable flexible channel access while achieving co-existence with the incumbent and other secondary heterogeneous networks. The blind synchronization technique vastly simplifies channel rendezvous in the secondary network and provides faster migration to a vacant spectrum. Through extensive simulations under varying signal-to-noise ratio (SNR) and spectral occupancy, we show significant improvement over existing algorithms employed for NC-OFDM synchronization in cognitive radios and make wideband cognitive radio networks a distinct possibility in the near future.
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