Linear phase variable 2-D filter design using real-complex decomposition

T. Deng
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引用次数: 3

Abstract

This paper proposes a new method for designing two-dimensional (2-D) variable digital filters with arbitrary variable magnitude characteristics and linear phases. By combining the given variable magnitude specification with linear phase specification, we first form a variable 2-D frequency response specification. Then we propose a real-complex decomposition method for decomposing the complex-valued variable specification into real-valued and complex-valued components. Finally, the resulting real-valued components are approximated by using 1-D polynomials, and the complex-valued components are approximated by the normal constant 2-D filters. Connecting the 1-D polynomials and 2-D constant filters obtains a variable 2-D filter. The significant advantage of the design method lies in that it can reduce the original difficult problem to a set of easier ones through the real-complex decomposition of the given variable specification.
采用实复分解的线性相位变量二维滤波器设计
本文提出了一种设计具有任意变幅特性和线性相位的二维(2-D)可变数字滤波器的新方法。通过将给定的变幅值规格与线性相位规格相结合,我们首先形成了一个可变的二维频率响应规格。然后提出了一种将复值变量规格分解为实值和复值分量的实-复分解方法。最后,用一维多项式近似得到实值分量,用常规常数二维滤波器近似得到复值分量。将一维多项式与二维常数滤波器连接起来,得到一个变量二维滤波器。该设计方法的显著优点在于通过对给定的变量规格进行实复分解,将原来的难题简化为一组较为简单的问题。
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