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Enhancement DPT Method in Terms of Estimation Chirp Rate and Central Frequency Parameters of the LFM Signal

机译:在LFM信号的估计啁啾速率和中央频率参数方面增强DPT方法

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The discrete polynomial-phase transform (DPT) method estimate chirp rate and central frequency of LFM signal based on sequential estimation of polynomial phase parameters. This method uses Nonlinear Least Squares (NLS) technique (based on FFT) to estimate phase parameters of the LFM signal. Although NLS enjoys a high level of statistical accuracy, it entails a lot of calculations. In this paper, in order to enhance the precision of estimation and also to reduce the calculations in DPT method, a technique called "combined" is proposed and used in DPT method in order to estimate chirp rate and central frequency of LFM signal .The combined technique firstly provides an initial estimate of frequency interval based on NLS criterion in single-exponential mode, then using initial estimation and Random Basis Functions method (RBF). Simulation results are presented to demonstrate better performance of DPT method by combined technique in order to estimate phase parameters of LFM signal as compared with the existing techniques.
机译:基于多项式相位参数的顺序估计,离散多项式相变(DPT)方法估计LFM信号的啁啾率和中心频率。该方法使用非线性最小二乘(NLS)技术(基于FFT)来估计LFM信号的相位参数。虽然NLS享有高水平的统计准确性,但它需要大量的计算。在本文中,为了提高估计的精度以及降低DPT方法的计算,提出了一种称为“组合”的技术,并用于DPT方法,以估计LFM信号的啁啾率和中心频率。结合技术首先提供基于单指数模式的NLS标准的频率间隔的初始估计,然后使用初始估计和随机基函数方法(RBF)。提出了模拟结果以通过组合技术证明DPT方法的更好性能,以便与现有技术相比估计LFM信号的相位参数。

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