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On Efficient Design of High-Order Filters With Applications to Filter Banks and Transmultiplexers With Large Number of Channels

机译:高阶滤波器的高效设计及其在具有大量通道的滤波器组和多路复用器中的应用

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This paper proposes a method for designing high-order linear-phase finite-length impulse response (FIR) filters which are required as, e.g., the prototype filters in filter banks (FBs) and transmultiplexers (TMUXs) with a large number of channels. The proposed method uses the Farrow structure to express the polyphase components of the desired filter. Thereby, the only unknown parameters, in the filter design, are the coefficients of the Farrow subfilters. The number of these unknown parameters is considerably smaller than that of the direct filter design methods. Besides these unknown parameters, the proposed method needs some predefined multipliers. Although the number of these multipliers is larger than the number of unknown parameters, they are known a priori. The proposed method is generally applicable to any linear-phase FIR filter irrespective of its order being high, low, even, or odd as well as the impulse response being symmetric or antisymmetric. However, it is more efficient for filters with high orders as the conventional design of such filters is more challenging. For example, to design a linear-phase FIR lowpass filter of order 131071 with a stopband attenuation of about 55 dB, which is used as the prototype filter of a cosine modulated filter bank (CMFB) with 8192 channels, our proposed method requires only 16 unknown parameters. The paper gives design examples for individual lowpass filters as well as the prototype filters for fixed and flexible modulated FBs.
机译:本文提出了一种设计高阶线性相位有限长度冲激响应(FIR)滤波器的方法,该滤波器是例如具有大量通道的滤波器组(FB)和多路复用器(TMUX)中的原型滤波器所必需的。所提出的方法使用Farrow结构来表达所需滤波器的多相分量。因此,在滤波器设计中,唯一未知的参数是Farrow子滤波器的系数。这些未知参数的数量比直接滤波器设计方法的数量小得多。除了这些未知参数之外,所提出的方法还需要一些预定义的乘法器。尽管这些乘数的数量大于未知参数的数量,但它们是先验的。所提出的方法通常适用于任何线性相位FIR滤波器,无论其阶次是高,低,偶数还是奇数,以及脉冲响应是对称的还是反对称的。然而,对于具有高阶的滤波器,其效率更高,因为此类滤波器的常规设计更具挑战性。例如,要设计阻带衰减约为131071的线性相位FIR低通滤波器,并将其用作具有8192个通道的余弦调制滤波器组(CMFB)的原型滤波器,我们提出的方法仅需要16个参数未知。本文给出了单个低通滤波器的设计实例以及固定和灵活调制FB的原型滤波器。

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