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首页> 外文期刊>IEEE Transactions on Geoscience and Remote Sensing >An Advanced Nonlinear Frequency Modulation Waveform for Radar Imaging With Low Sidelobe
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An Advanced Nonlinear Frequency Modulation Waveform for Radar Imaging With Low Sidelobe

机译:低旁瓣雷达成像的高级非线性调频波形

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With the development of high-resolution radar satellite for global comprehensive environmental monitoring, dayand- night and all-weather surveillance has become an active and growing research field. However, in all cases, these applications require radar to have a high-efficiency radar module (e. g., T/R module), and high system transmitting power. These requirements may put an important limitation on the performance of a radar satellite with a high-power configuration. In this paper, we report a novel waveform optimization framework. Through this framework, an advanced nonlinear frequency modulation (NLFM) waveform with lower sidelobes and a smaller main lobe, which can significantly relieve the restriction of very limited satellite power, is constructed. In addition, we apply it in a real synthetic aperture radar (SAR) system with a bandwidth of 100 MHz at 9.6-GHz carrier frequency and the whole process of the NLFM waveform for radar imaging is discussed in detail, including the system architecture and configuration, a system error compensation method, and a modified chirp scaling algorithm (CSA). The imaging results demonstrate the excellent performance of the advanced NLFM waveform. Moreover, we observe that the SAR system with the advanced waveform has a higher signal-to-noise ratio (SNR) of 1.29 dB compared with the conventional linear frequency modulation (LFM) waveform. The improvement of 1.29-dB SNR means that the real radar system can reduce transmitting power with a ratio of 25%. This effect is likely to be a potential feature of NLFM waveform, which can reduce the transmitting power requirement, especially for radar satellite.
机译:随着用于全球全面环境监测的高分辨率雷达卫星的发展,昼夜和全天候监测已成为活跃且不断发展的研究领域。然而,在所有情况下,这些应用都要求雷达具有高效的雷达模块(例如,T / R模块)和高的系统发射功率。这些要求可能会严重限制具有高功率配置的雷达卫星的性能。在本文中,我们报告了一种新颖的波形优化框架。通过该框架,可以构建具有较低旁瓣和较小主瓣的高级非线性频率调制(NLFM)波形,该波形可以显着缓解非常有限的卫星功率的限制。此外,我们将其应用于9.6 GHz载波频率,带宽为100 MHz的真实合成孔径雷达(SAR)系统中,并详细讨论了用于雷达成像的NLFM波形的整个过程,包括系统架构和配置,系统误差补偿方法和改进的线性调频缩放算法(CSA)。成像结果表明先进的NLFM波形具有出色的性能。此外,我们观察到具有先进波形的SAR系统与传统的线性频率调制(LFM)波形相比,具有更高的1.29 dB的信噪比(SNR)。 1.29 dB SNR的提高意味着真正的雷达系统可以将发射功率降低25%。这种影响可能是NLFM波形的潜在特征,可以降低发射功率要求,尤其是对于雷达卫星。

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