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THE EFFECT OF PULSE COMPRESSION CHIRP PARAMETERS ON PROFILOMETRY INFORMATION AND RESOLUTION

机译:脉冲压缩线性调频参数对测峰信息和分辨率的影响

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Recent developments in imaging systems have seen the implementation of a radar matched-filtering approach. The goal of the imaging system is to obtain information about an unknown object embedded in the system, by controlling the parameters of the input and measuring the response to the known input. The main merit of using matched filtering in imaging systems is the improvement of Signal to Noise Ratio (SNR). However, the correlation process used in matched filtering may result in a loss of resolution. One way to compensate for lost resolution is via pulse compression. Linear frequency modulated sinusoidal waveforms (chirps) have the property of pulse compression after correlation. Hence, both SNR and resolution can be enhanced by matched-filtering and pulse compression with a chirp. However, the theory behind the effect of chirp parameters on resolution is still not clear. In this paper, a one-dimensional theory of matched-filter imaging with a pulse compressed linear frequency modulated sinusoidal chirp is developed. The effect of the chirp parameters on the corresponding signal is investigated, and guidelines for choosing the chirp parameters for resolution considerations are given based on the developed theory and simulations. The results showed that by manipulating the center frequency, bandwidth, and duration of the chirp, the resolution can be easily enhanced.
机译:成像系统的最新发展已经看到了雷达匹配滤波方法的实施。成像系统的目标是通过控制输入的参数并测量对已知输入的响应,来获取有关嵌入系统中的未知对象的信息。在成像系统中使用匹配滤波的主要优点是提高了信噪比(SNR)。但是,在匹配过滤中使用的相关过程可能会导致分辨率降低。补偿分辨率损失的一种方法是通过脉冲压缩。线性调频正弦波形(chirps)具有相关后的脉冲压缩特性。因此,可以通过匹配滤波和线性调频脉冲压缩来提高SNR和分辨率。但是,线性调频脉冲参数对分辨率的影响背后的理论尚不清楚。在本文中,发展了一维理论与脉冲压缩线性调频正弦chi匹配滤波器的成像。研究了线性调频脉冲参数对相应信号的影响,并基于已发展的理论和仿真给出了线性调频脉冲参数用于考虑分辨率的准则。结果表明,通过操纵the的中心频率,带宽和持续时间,可以轻松提高分辨率。

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