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Weighted least-squares method for designing arbitrarily variable 1-D FIR digital filters

机译:设计任意变量一维FIR数字滤波器的加权最小二乘法

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Variable digital filters with variable cutoff frequencies can be designed by frequency transformation methods. Such methods are simple, but they are not applicable to the design of variable filters with arbitrarily variable frequency responses. This paper proposes an efficient method for designing variable one-dimensional (1-D) finite-impulse-response (FIR) digital filters with arbitrarily variable magnitude characteristics and specified linear or nonlinear phase responses. First, each coefficient of the variable FIR filter is assumed to be a multi-dimensional (M-D) polynomial of spectral parameters that specify different variable magnitude characteristics. Then we present a pair of least-squares algorithms for finding the optimal polynomial coefficients by minimizing the weighted squared error between the desired vari- able frequency response and the actual frequency response. The first one is for designing 1-D FIR filters with variable magnitude response and linear-phase, and the second one is for designing variable 1-D FIR filters with variable magnitude response and nonlinear-phase. Although the first algorithm can be regarded as a special case of the second one, using the first one in the linear case can simplify the design significantly. The proposed methods are very straightforward and efficient for designing variable digital filters with arbitrarily variable magnitude responses and specified linear or nonlinear phases.
机译:具有可变截止频率的可变数字滤波器可以通过频率变换方法来设计。这样的方法很简单,但是不适用于具有任意可变频率响应的可变滤波器的设计。本文提出了一种有效的方法,用于设计具有任意可变幅度特征和指定线性或非线性相位响应的可变一维(1-D)有限冲激响应(FIR)数字滤波器。首先,假定可变FIR滤波器的每个系数都是频谱参数的多维(M-D)多项式,这些参数指定了不同的可变幅度特征。然后,我们提出了一对最小二乘算法,通过最小化所需的可变频率响应和实际频率响应之间的加权平方误差来找到最佳多项式系数。第一个用于设计具有可变幅度响应和线性相位的1-D FIR滤波器,第二个用于设计具有可变幅度响应和非线性相位的可变1-D FIR滤波器。尽管第一种算法可以视为第二种算法的特殊情况,但在线性情况下使用第一种算法可以显着简化设计。所提出的方法对于设计具有任意可变幅度响应和指定线性或非线性相位的可变数字滤波器非常简单有效。

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