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首页> 外文期刊>IEEE Transactions on Signal Processing >Discrete Time-Scale Characterization of Wideband Time-Varying Systems
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Discrete Time-Scale Characterization of Wideband Time-Varying Systems

机译:宽带时变系统的离散时标表征

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Wideband time-varying systems can be found in many applications, including underwater acoustics and ultra-wideband technologies. The time variation due to Doppler scaling effects, coupled with dispersive scattering due to multipath propagation, can severely limit the performance of wideband systems. Just as the discrete time-frequency model can efficiently improve narrowband processing, a discrete time-scale system characterization is important in processing wideband time-varying systems. In this paper, a time-scale model is proposed as a discrete characterization of wideband time-varying systems. This representation decomposes a wideband system output into discrete time shifts and Doppler scalings on the input signal, weighted by a smoothed and sampled version of the wideband spreading function. The proposed transform-based approach uses the Mellin transform that is inherently matched to scalings to geometrically sample the scale parameter and the Fourier transform to arithmetically sample the time-delay parameter. Using this proposed model, and by properly designing the signaling and reception schemes using wavelet techniques, a joint multipath-scale diversity can be achieved over a dyadic time-scale framework in wideband wireless systems. The simulation results demonstrate that, based on the proposed model, performance can be increased by exploiting the diversity intrinsically afforded by the wideband system.
机译:宽带时变系统可以在许多应用中找到,包括水下声学和超宽带技术。由于多普勒缩放效应而引起的时间变化,以及由于多径传播而引起的色散,会严重限制宽带系统的性能。正如离散时频模型可以有效地改善窄带处理一样,离散时标系统表征对于处理宽带时变系统也很重要。本文提出了一种时标模型,作为宽带时变系统的离散表征。此表示将宽带系统输出分解为离散的时移和输入信号上的多普勒缩放比例,并由宽带扩展函数的平滑采样版本进行加权。所提出的基于变换的方法使用与缩放比例固有匹配的Mellin变换,以几何方式缩放比例参数,而Fourier变换以算术方式采样时间延迟参数。使用该提出的模型,并通过使用小波技术适当设计信令和接收方案,可以在宽带无线系统中的二元时间尺度框架上实现联合的多径尺度分集。仿真结果表明,基于所提出的模型,可以通过利用宽带系统固有提供的分集来提高性能。

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