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Transmitter-Side Multipath Preprocessing for Pulsed UWB Systems Considering Pulse Overlapping and Narrow-Band Interference

机译:考虑脉冲重叠和窄带干扰的脉冲UWB系统的发射机侧多径预处理

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摘要

We analyze a prerake diversity combining scheme for pulsed ultrawideband systems to shift signal processing needs from the receiver to the transmitter. We consider the realistic case that received pulses carrying the same transmitted symbol could overlap with one another in optimizing the prerake scheme based on zero-forcing and eigenanalysis techniques. We show that in the presence of interpulse interference caused by pulse overlapping, the optimum prerake combining scheme in the sense of maximizing the received signal-to-noise ratio derived by using the eigenanalysis technique performs the same as a conventional rake with maximal ratio combining. We also analyze the different behaviors of prerake and rake schemes in the presence of tone interferers and provide numerical results to validate the conclusions in the presence of in-band-modulated interferers. We find that when the number of narrow-band interference (NBI) signals is small, the prerake scheme outperforms the rake scheme; as the number of NBI sources increases, however, this performance gap reduces.
机译:我们分析了脉冲超宽带系统的预瑞克分集合并方案,以将信号处理需求从接收器转移到发射器。我们认为现实情况是,在基于零强迫和特征分析技术优化预瑞克方案时,接收到带有相同发射符号的脉冲可能会相互重叠。我们表明,在存在由脉冲重叠引起的脉冲间干扰的情况下,从使用特征分析技术得出的接收信噪比最大化的意义上来说,最佳预瑞克组合方案的性能与具有最大比率组合的常规耙一样。我们还分析了在存在音调干扰源的情况下前耙和瑞克方案的不同行为,并提供了数值结果以验证在带内调制干扰源存在下的结论。我们发现,当窄带干扰(NBI)信号的数量较少时,预瑞克方案优于瑞克方案;但是,随着NBI来源数量的增加,这种性能差距会减小。

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