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Improved IIR Low-Pass Smoothers and Differentiators with Tunable Delay

机译:改进了可调谐延迟的IIR低通泡沫和差异化器

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Regression analysis using orthogonal polynomials in the time domain is used to derive closed-form expressions for causal and non-causal filters with an infinite impulse response (IIR) and a maximally-flat magnitude and delay response. The phase response of the resulting low-order smoothers and differentiators, with low-pass characteristics, may be tuned to yield the desired delay in the pass band or for zero gain at the Nyquist frequency. The filter response is improved when the shape of the exponential weighting function is modified and discrete associated Laguerre polynomials are used in the analysis. As an illustrative example, the derivative filters are used to generate an optical-flow field and to detect moving ground targets, in real video data collected from an airborne platform with an electro-optic sensor.
机译:使用时域中的正交多项式的回归分析用于导出具有无限脉冲响应(IIR)的因果和非因果滤波器的闭合形式表达式和最大平坦的幅度和延迟响应。可以调谐所得到的低阶Smoothers和差分器的阶段响应,以在奈奎斯特频率下产生通频带中的期望延迟,或者在奈奎斯特频率处产生零增益。当修改指数加权函数的形状并且在分析中使用离散相关的Laguerre多项式时,改善了滤波器响应。作为说明性示例,衍生滤波器用于生成光流场并检测从带有电光传感器收集的真实视频数据中的移动地目标。

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