Zhang Yan, Yeh Chunmao, Li Zhangfeng, Lu Yaobing, Chen Xuebin
Beijing Institute of Radio Measurement, Beijing 100854, China.
Sensors (Basel). 2021 Oct 8;21(19):6673. doi: 10.3390/s21196673.
Stepped-frequency waveform may be used to synthesize a wideband signal with several narrow-band pulses and achieve a high-resolution range profile without increasing the instantaneous bandwidth. Nevertheless, the conventional stepped-frequency waveform is Doppler sensitive, which greatly limits its application to moving targets. For this reason, this paper proposes a waveform design method using a staggered pulse repetition frequency to improve the Doppler tolerance effectively. First, a generalized echo model of the stepped-frequency waveform is constructed in order to analyze the Doppler sensitivity. Then, waveform design is carried out in the stepped-frequency waveform by using a staggered pulse repetition frequency so as to eliminate the high-order phase component that is caused by the target's velocity. Further, the waveform design method is extended to the sparse stepped-frequency waveform, and we also propose corresponding methods for high-resolution range profile synthesis and motion compensation. Finally, experiments with electromagnetic data verify the high Doppler tolerance of the proposed waveform.
步进频率波形可用于合成具有多个窄带脉冲的宽带信号,并在不增加瞬时带宽的情况下实现高分辨率距离像。然而,传统的步进频率波形对多普勒敏感,这极大地限制了其在运动目标中的应用。因此,本文提出一种使用交错脉冲重复频率的波形设计方法,以有效提高多普勒容限。首先,构建步进频率波形的广义回波模型,以便分析多普勒敏感性。然后,通过使用交错脉冲重复频率在步进频率波形中进行波形设计,以消除由目标速度引起的高阶相位分量。此外,将该波形设计方法扩展到稀疏步进频率波形,并提出了相应的高分辨率距离像合成和运动补偿方法。最后,电磁数据实验验证了所提波形具有高多普勒容限。