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Channel Influence Mitigation in Pseudo-noise Waveform Design for Radar Applications

机译:雷达应用伪噪声波形设计中的通道影响缓解

摘要

Noise Radar is a rapidly developing technology which uses noise or pseudo-noise waveforms as sounding signals to de- tect targets of interest. The advantages of such waveforms are no range nor velocity ambiguities, the possibility of using continuous waveform and low probability of intercept. However, the noise waveform correlation sidelobes are spread across the entire range–Doppler plane and their level is de- termined by the time-bandwidth product. Such sidelobes limit the detection capability in the multitarget environment. Several algorithms exist that decrease the sidelobe level and thus enhance dynamic range of the radar, but they are very susceptible to distortions in an analogue channel. In this paper the author presents a method to create low-sidelobe waveforms using a filtering algorithm designed for given channel, decreasing the analogue front-end impact on the final properties of the waveforms.
机译:噪声雷达是一项快速发展的技术,它使用噪声或伪噪声波形作为探测信号来检测目标物体。这样的波形的优点是没有范围和速度的歧义,使用连续波形的可能性和低的拦截概率。但是,噪声波形相关旁瓣分布在整个多普勒平面范围内,其电平由时间带宽乘积确定。这样的旁瓣限制了多目标环境中的检测能力。存在几种降低旁瓣电平并因此提高雷达动态范围的算法,但是它们非常容易受到模拟通道失真的影响。在本文中,作者提出了一种使用为给定通道设计的滤波算法创建低旁瓣波形的方法,从而减少了模拟前端对波形最终特性的影响。

著录项

  • 作者

    Kulpa J. S.;

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  • 年度 2014
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  • 原文格式 PDF
  • 正文语种 {"code":"en","name":"English","id":9}
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