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Design and implementation of UWB pulse with multiple narrow-band interferences mitigation

机译:具有多种窄带干扰缓解功能的UWB脉冲的设计与实现

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In this paper, a novel ultra-wideband (UWB) pulse shaping method was presented to generate IR-UWB waveforms which can suppress multiple narrow-band interferences. The proposed method includes two steps. First, to completely satisfy and fully utilize the FCC power spectral density mask, an “interim-pulse” was generated by combining several Gaussian derivative pulses with proper combination coefficients. Then, combining two such “interim-pulses” with a certain delay time, a composite UWB waveform which can mitigate multiple narrowband interferences was eventually generated. To verify the accuracy of the proposed method, a simulation setup was conducted by using MATLAB. Moreover, a low-power, low-cost waveform generator was designed and simulated with Spectra-RF 0.13um CMOS technology. The results indicate that the composite waveform generated by the proposed method can suppress multiple narrow-band interferences by introducing inherent notch frequencies in the power spectral density. Furthermore, the notch frequencies and the number of notches can be adjusted by changing the delay time.
机译:本文提出了一种新颖的超宽带(UWB)脉冲整形方法,以生成可抑制多种窄带干扰的IR-UWB波形。所提出的方法包括两个步骤。首先,为了完全满足并充分利用FCC功率谱密度掩模,通过将几个高斯导数脉冲与适当的组合系数组合在一起,生成了一个“中间脉冲”。然后,将两个这样的“中间脉冲”与一定的延迟时间组合在一起,最终生成了可以减轻多个窄带干扰的复合UWB波形。为了验证所提方法的准确性,使用MATLAB进行了仿真设置。此外,利用Spectra-RF 0.13um CMOS技术设计并仿真了一种低功耗,低成本的波形发生器。结果表明,通过在功率谱密度中引入固有陷波频率,该方法产生的复合波形可以抑制多种窄带干扰。此外,可以通过改变延迟时间来调整陷波频率和陷波数量。

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