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首页> 外文期刊>EURASIP journal on advances in signal processing >Interference tables: a useful model for interference analysis in asynchronous multicarrier transmission
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Interference tables: a useful model for interference analysis in asynchronous multicarrier transmission

机译:干扰表:异步多载波传输中干扰分析的有用模型

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In this paper, we investigate the impact of timing asynchronism on the performance of multicarrier techniques in a spectrum coexistence context. Two multicarrier schemes are considered: cyclic prefix-based orthogonal frequency division multiplexing (CP-OFDM) with a rectangular pulse shape and filter bank-based multicarrier (FBMC) with physical layer for dynamic spectrum access and cognitive radio (PHYDYAS) and isotropic orthogonal transform algorithm (IOTA) waveforms. First, we present the general concept of the so-called power spectral density (PSD)-based interference tables which are commonly used for multicarrier interference characterization in spectrum sharing context. After highlighting the limits of this approach, we propose a new family of interference tables called ‘instantaneous interference tables’. The proposed tables give the interference power caused by a given interfering subcarrier on a victim one, not only as a function of the spectral distance separating both subcarriers but also with respect to the timing misalignment between the subcarrier holders. In contrast to the PSD-based interference tables, the accuracy of the proposed tables has been validated through different simulation results. Furthermore, due to the better frequency localization of both PHYDYAS and IOTA waveforms, FBMC technique is demonstrated to be more robust to timing asynchronism compared to OFDM one. Such a result makes FBMC a potential candidate for the physical layer of future cognitive radio systems.
机译:在本文中,我们研究了频谱共存情况下定时异步对多载波技术性能的影响。考虑了两种多载波方案:具有矩形脉冲形状的基于循环前缀的正交频分复用(CP-OFDM)和具有物理层的基于滤波器组的多载波(FBMC),用于动态频谱访问以及认知无线电(PHYDYAS)和各向同性正交变换算法(IOTA)波形。首先,我们介绍了所谓的基于功率谱密度(PSD)的干扰表的一般概念,这些表通常用于频谱共享环境中的多载波干扰表征。在强调了这种方法的局限性之后,我们提出了一个新的干扰表系列,称为“瞬时干扰表”。提出的表格给出了由给定的受干扰子载波对受害人造成的干扰功率,这不仅取决于两个子载波之间的频谱距离,而且还取决于子载波持有者之间的时序失准。与基于PSD的干扰表相比,已通过不同的仿真结果验证了所提出表的准确性。此外,由于PHYDYAS和IOTA波形的频率定位更好,因此与OFDM技术相比,FBMC技术对时序异步性更强健。这样的结果使FBMC成为未来认知无线电系统物理层的潜在候选者。

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