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Signal processing technique for randomly discontinuous spectra HF radar waveforms

机译:随机不连续谱HF雷达波形的信号处理技术

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摘要

A major problem with all high frequency (HF) radars is a relatively poor range resolution available due to many interference sources. To avoid the interferences in frequency domain and operate with wideband, the randomly discontinuous spectra (RDS) signal is employed. However, it results in high range sidelobes when matching the reflected echo, which is much more difficult for target detection. A new signal processing technique that is radically different from the conventional technique to lower range sidelobes is introduced. This method is based on suppressing the selfclutter of the radar range ambiguity function (AF) by mismatched filtering. An effective algorithm is adopted to solve the filter coefficients. Simulation results show that the peak sidelobe level can be reduced to −30dB and the achievable system bandwidth is about 400KHz. The technique is adaptable to practical radar systems and applicable for other realtime signal processing.
机译:所有高频(HF)雷达的主要问题是由于许多干扰源而导致的相对较差的距离分辨率。为了避免频域中的干扰并在宽带下工作,采用了随机不连续频谱(RDS)信号。但是,当与反射回波匹配时会导致高旁瓣,这对于目标检测来说要困难得多。引入了一种新信号处理技术,该技术与常规技术的根本不同之处在于其较低的旁瓣。该方法基于通过不匹配滤波抑制雷达距离模糊函数(AF)的自扰。采用有效的算法求解滤波器系数。仿真结果表明,峰值旁瓣电平可降低至-30dB,可实现的系统带宽约为400KHz。该技术适用于实际的雷达系统,并适用于其他实时信号处理。

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