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Design of Modified Second-Order Frequency Transformations Based Variable Digital Filters With Large Cutoff Frequency Range and Improved Transition Band Characteristics

机译:具有大截止频率范围和改进的过渡带特性的基于修改的二阶频率变换的可变数字滤波器的设计

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摘要

The frequency transformation based filters (FT filters) provide an absolute control over the cutoff frequency. However, the cutoff frequency range ( of the FT filters is limited. The second-order frequency transformations combined with coefficient decimation technique based filter (FTCDM filter) has wider compared with the FT filter; however, the ratio of transition bandwidth of the transformed filter to that of the prototype filter, /, is large over a significant portion of . In this paper, we propose a novel idea of relaxing the one-to-one mapping condition between the frequency variables, to overcome the issue of limited for . In the proposed modified second-order frequency transformation based filter (MSFT filter), we relax the one-to-one mapping condition between the frequency variables and use low-pass to high-pass transformation on the prototype filter to achieve wider with . Design example shows that the MSFT filter provides 3 and 1.22 times wider compared to FT and FTCDM filters, respectively.
机译:基于频率变换的滤波器(FT滤波器)可对截止频率进行绝对控制。但是,FT滤波器的截止频率范围是有限的。与基于FT滤波器的二阶频率变换结合基于系数抽取技术的滤波器(FTCDM滤波器)相比,FT滤波器具有更宽的范围;但是,变换后的滤波器的过渡带宽之比相对于原型滤波器,/在整个的很大一部分上都很大。在本文中,我们提出了一种新颖的想法,即放宽频率变量之间的一对一映射条件,以克服对的限制。提出了改进的基于二阶频率变换的滤波器(MSFT滤波器),我们放宽了频率变量之间的一对一映射条件,并在原型滤波器上使用了低通到高通变换,以实现更宽的设计范围。显示MSFT过滤器分别比FT和FTCDM过滤器宽3倍和1.22倍。

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