Design of a Digital Notch Filter with Tracking Requirements

R. Carney
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引用次数: 20

Abstract

The development of a digital filter using sampled data theory techniques and having a desired frequency response characteristic is described. Specifically, design of a digital notch filter is accomplished through formulation of a regression equation for application to sampled input and output values from the filter. After first expressing the desired transfer function in the continous domain, the equation is developed using sampled data theory relationships. Although the techniques are applied to a specific type of filter, they are general in nature. The problem considered involves attenuation of a particular frequency and those in its immediate vicinity while leaving other even slightly distant frequencies relatively unattenuated. An additional requirement calls for tracking and attenuating an input whose frequency is time-variable. In particular, a linearly (with respect to time) variable frequency is considered and discussed. Testing and evaluation were performed through simulation on a general purpose digital computer. Results obtaied are described.
具有跟踪要求的数字陷波滤波器的设计
描述了一种采用采样数据理论技术并具有期望频率响应特性的数字滤波器的发展。具体来说,数字陷波滤波器的设计是通过对滤波器的采样输入和输出值的回归方程的公式来完成的。首先在连续域中表示期望的传递函数,然后利用采样数据理论关系推导出方程。虽然这些技术适用于特定类型的过滤器,但它们在本质上是通用的。所考虑的问题涉及特定频率及其附近频率的衰减,而使其他甚至稍远的频率相对未衰减。另一个要求是跟踪和衰减频率随时间变化的输入。特别地,线性(相对于时间)可变频率被考虑和讨论。在通用数字计算机上进行了仿真测试和评估。描述了得到的结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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