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Improving Polynomial Phase Parameter Estimation by Using Nonuniformly Spaced Signal Sample Methods

机译:通过使用非均匀间隔信号采样方法改进多项式相位参数估计

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摘要

This paper investigates the computationally efficient parameter estimation of polynomial phase signals embedded in noise. Many authors have previously proposed multilinear analysis methods which operate on uniformly spaced samples of the signal. Such methods include the higher-order ambiguity functions (HAFs), the Polynomial Wigner-Ville distributions (PWVDs) and the higher-order phase (HP) functions. This paper investigates the use of multilinear methods which operate on nonuniformly spaced signal samples. It is seen that the relaxation of the requirement to use uniformly spaced samples in the analysis can lead to significant performance improvements. A theoretical analysis and simulations are presented in support of these claims.
机译:本文研究了嵌入噪声中的多项式相位信号的高效计算参数估计。许多作者以前已经提出了对信号的均匀间隔采样进行操作的多线性分析方法。这些方法包括高阶模糊函数(HAF),多项式Wigner-Ville分布(PWVDs)和高阶相位(HP)函数。本文研究了对不均匀间隔的信号样本进行操作的多线性方法的使用。可以看出,在分析中使用均匀间隔的样本的要求的放宽可以显着提高性能。提出了理论分析和模拟以支持这些主张。

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