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Maximally Flat IIR Smoothers With Repeated Poles and a Prescribed Delay

机译:最大IIR平滑器,带有重复的极点和规定的延迟

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The problem of optimal high-frequency noise suppression and low-frequency signal transmission in sampled sensor systems is considered in this paper. Low-delay digital filters with linear phase and unity magnitude at the dc limit (i.e., maximally flat) are of particular interest. Savitzky–Golay smoothers with an infinite impulse response (IIR) are introduced and their properties are explored. The filter coefficients are derived via regression analysis using orthogonal Laguerre polynomials in the time domain. A generalized form with a shape parameter included in the error-weighting function is proposed. This extension may be used to further reduce the white noise gain of the filter. A design process that determines the optimal position of the repeated real poles, either to minimize the white noise gain, or to maximize the high-frequency attenuation, for a specified low-frequency group delay, is discussed. An alternative process for the design of a generic class of maximally flat repeated-pole filters is also presented. This allows colored noise to be handled and/or additional frequency-domain constraints, such as Nyquist flatness, to be applied.
机译:本文考虑了采样传感器系统中的最佳高频噪声抑制和低频信号传输问题。线性相位和单位幅值在dc极限处(即最大平坦)的低延迟数字滤波器尤其令人关注。介绍了具有无限脉冲响应(IIR)的Savitzky-Golay平滑剂,并探讨了它们的性能。通过使用时域中的正交Laguerre多项式进行回归分析,可以得出滤波器系数。提出了误差加权函数中包含形状参数的广义形式。此扩展可用于进一步降低滤波器的白噪声增益。讨论了一种设计过程,该过程确定重复的实极点的最佳位置,以针对指定的低频群延迟最小化白噪声增益或最大化高频衰减。还介绍了用于设计通用类的最大平坦重复极点滤波器的替代方法。这允许处理有色噪声和/或应用其他频域约束,例如奈奎斯特平坦度。

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