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Sine-wave parameter estimation by interpolated DFT method based on new cosine windows with high interference rejection capability

机译:基于具有高抗干扰能力的新余弦窗的内插DFT法估计正弦波参数

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摘要

The parameters of a sine-wave are often estimated by means of the classical Interpolated Discrete Fourier Transform (IpDFTc) method based on cosine windows since this method provides high accuracy while requiring low computational effort. When the number of acquired sine-wave cycles is small, estimation accuracy is heavily affected by the interference due to spectral leakage from both the sine-wave image component and other disturbance tones such as signal harmonics. To reduce both these detrimental effects new cosine windows are proposed in this paper. Their spectra exhibit a deep null close to the image component interfering frequency and the highest allowed sidelobe decay rate, so assuring minimization of long range spectral leakage. These windows are called Maximum Image interference Rejection windows with Rapid Sidelobe Decay rate (RSD) or simply, MIR-RSD windows. The analytical expressions of the sine-wave parameter estimators provided by the IpDFTc method based on the H-term MIR-RSD window (H >= 2) are also derived. To assess the effectiveness of the MIR-RSD windows in rejecting the spectral interference when analyzing noisy or harmonically distorted sine-waves, the accuracy of the proposed frequency estimator is compared with those provided by other IpDFT frequency estimators through simulation and experimental results. (C) 2014 Elsevier Inc. All rights reserved.
机译:正弦波的参数通常通过基于余弦窗口的经典内插离散傅立叶变换(IpDFTc)方法进行估算,因为该方法提供了很高的精度,同时需要较少的计算量。当获取的正弦波周期数较少时,由于正弦波图像分量和其他干扰音(例如信号谐波)的频谱泄漏引起的干扰会严重影响估计精度。为了减少这两种有害影响,本文提出了新的余弦窗口。它们的光谱在接近图像分量的干扰频率和最大允许旁瓣衰减率附近表现出很深的零点,从而确保了长距离光谱泄漏的最小化。这些窗口称为具有快速旁瓣衰减率(RSD)的“最大图像干扰抑制”窗口,或简称为MIR-RSD窗口。还推导了基于H项MIR-RSD窗口(H> = 2)的IpDFTc方法提供的正弦波参数估计器的解析表达式。为了评估在分析噪声或谐波失真正弦波时MIR-RSD窗口在拒绝频谱干扰方面的有效性,通过仿真和实验结果将拟议频率估算器的精度与其他IpDFT频率估算器提供的精度进行了比较。 (C)2014 Elsevier Inc.保留所有权利。

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