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Noise Radar for range/Doppler processing and digital beamforming using low-bit ADC

机译:使用低位ADC进行范围/多普勒处理和数字波束形成的噪声雷达

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摘要

Pulse compression radar is used in a great number of radar applications. Excellent range resolution and high resistance to electronic countermeasures (ECM) can be achieved by long wideband modulated pulses, which spread out the transmitted energy in frequency and time. By using random noise as the waveform, the range ambiguity can be suppressed as well. In this paper, noise radar for Doppler/range indication and digital beamforming is described. Main factors influencing the resolution and sidelobe level in range and Doppler are surveyed. In particular, the possible use of binary or low-bit analog-to-digital converters (ADCs) in noise radar is analyzed, which highly improves the signal-processing rate and reduces the costs. The very significant improvement of sidelobe suppression, when an extra noise signal is added before ADC, is explained theoretically and confirmed by simulation results. Mostly, the random signal is transmitted directly from a noise generating high-frequency source. A sine wave, which is phase or frequency modulated by random noise, is an alternative, giving lower range sidelobes, and higher transmitted mean power when peak-limited transmitters are applied. The dynamic requirements and the bandwidth of the modulating signal can be reduced as well.
机译:脉冲压缩雷达广泛用于雷达应用中。长的宽带调制脉冲可以实现出色的距离分辨率和对电子对抗性(ECM)的高抵抗力,该脉冲可以在频率和时间上分散发射的能量。通过使用随机噪声作为波形,范围模糊也可以被抑制。在本文中,描述了用于多普勒/距离指示和数字波束成形的噪声雷达。调查了影响距离和多普勒分辨率和旁瓣水平的主要因素。特别是,分析了在噪声雷达中可能使用二进制或低位模数转换器(ADC)的情况,从而极大地提高了信号处理速率并降低了成本。理论上解释了当在ADC之前添加额外的噪声信号时,旁瓣抑制的非常显着改善,并通过仿真结果得到证实。通常,随机信号是直接从产生噪声的高频源发送的。通过随机噪声对相位或频率进行调制的正弦波是一种替代方法,当应用峰值限制的发射器时,它会提供较低的旁瓣和较高的发射平均功率。动态需求和调制信号的带宽也可以降低。

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