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Nyquist Zone Index and Chirp Rate Estimation of LFM Signal Intercepted by Nyquist Folding Receiver Based on Random Sample Consensus and Fractional Fourier Transform

机译:基于随机样本共识和分数阶傅里叶变换的奈奎斯特折叠接收机截获的LFM信号的奈奎斯特区指数和线性调频率估计

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The Nyquist folding receiver (NYFR) can achieve a high-probability interception of an ultra-wideband (UWB) signal with fewer devices, while the output of the NYFR is converted into a hybrid modulated signal of the local oscillator (LO) and the received signal, which requires the matching parameter estimation methods. The linear frequency modulation (LFM) signal is a typical low probability of intercept (LPI) radar signal. In this paper, an estimation method of both the Nyquist Zone (NZ) index and the chirp rate for the LFM signal intercepted by NYFR was proposed. First, according to the time-frequency characteristics of the LFM signal, the accurate NZ and the rough chirp rate was estimated based on least squares (LS) and random sample consensus (RANSAC). Then, the information of the LO was removed from the hybrid modulated signal by the known NZ, and the precise chirp rate was obtained by using the fractional Fourier transform (FrFT). Moreover, a fast search method of FrFT optimal order was presented, which could obviously reduce the computational complexity. The simulation demonstrated that the proposed method could precisely estimate the parameters of the hybrid modulated output signal of the NYFR.
机译:奈奎斯特折叠接收机(NYFR)可以用更少的设备实现对超宽带(UWB)信号的高概率侦听,而NYFR的输出将转换为本地振荡器(LO)的混合调制信号,并接收信号,需要匹配的参数估计方法。线性调频(LFM)信号是拦截(LPI)雷达信号的典型低概率。在本文中,提出了一种对NYFR截取的LFM信号的奈奎斯特区指数和线性调频率的估计方法。首先,根据LFM信号的时频特性,基于最小二乘法(LS)和随机样本共识(RANSAC)估算出准确的NZ和粗调chi率。然后,通过已知的NZ从混合调制信号中删除LO的信息,并使用分数傅里叶变换(FrFT)获得精确的线性调频率。此外,提出了一种快速搜索FrFT最优顺序的方法,可以明显降低计算复杂度。仿真表明,该方法可以精确估计NYFR混合调制输出信号的参数。

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