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A Novel Radar Waveform Design for a Low-Power HF Monostatic Radar

机译:低功率HF单基地雷达的新型雷达波形设计

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In this letter, a novel radar waveform is proposed for a low-power high-frequency monostatic radar used for ionospheric sensing and aircraft detection. In this proposed waveform, a hybrid modulation scheme is adopted, where the pulse-to-pulse phase is coded by the WG sequence, and the frequency of each subpulse is linearly modulated with a fixed chirp rate. Compared with the conventional binary-phase-coded waveform, larger signal processing gain, higher range resolution, and lower range sidelobes can be simultaneously achieved with the proposed waveform. Furthermore, it is more insensitive to the Doppler shifts and is not subject to significant range-Doppler cross coupling. With this newly proposed waveform, the ionospheric backscatter ionogram with clear leading and trailing edges can be obtained in the range of 500–2300 km, and the aircraft target can be also clearly detected.
机译:在这封信中,提出了一种用于电离层传感和飞机检测的低功率高频单基地雷达的新型雷达波形。在该提出的波形中,采用了一种混合调制方案,其中脉冲到脉冲的相位由WG序列编码,并且每个子脉冲的频率以固定的线性调频率线性调制。与传统的二进制相位编码波形相比,使用所提出的波形可以同时实现更大的信号处理增益,更高的范围分辨率和更低的旁瓣。此外,它对多普勒频移更不敏感,并且不受显着范围多普勒交叉耦合的影响。利用这个新提出的波形,可以在500–2300 km的范围内获得具有清晰的前缘和后缘的电离层反向散射电离图,还可以清楚地检测出飞机目标。

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