DCGA optimization of lowpass FRM IIR digital filters over CSD multiplier coefficient space

S. Bokhari, B. Nowrouzian
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引用次数: 5

Abstract

Frequency-Response Masking (FRM) technique is known to significantly reduce computational complexity of sharp transition-band digital filters. This paper presents a novel technique for the design and optimization of a guaranteed BIBO stable FRM IIR lowpass digital filter, employing an odd-order IIR elliptic minimum Q-factor (EMQF) prototype digital filter. The bilinear-LDI design approach is used to realize the prototype digital filter as a parallel combination of a pair of digital allpass networks. A diversity-controlled genetic algorithm (DCGA) is employed for the optimization of the bilinear-LDI FRM IIR digital filter over the canonical signed-digit multiplier coefficient space. A LUT-based scheme is employed to ensure that the resulting FRM IIR digital filter is automatically BIBO stable during DCGA optimization. The proposed technique is illustrated through its application to the optimization of a fifth-order lowpass elliptic FRM IIR digital filter, resulting in a rapid convergence speed of around 300 iterations.
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CSD乘数系数空间上低通FRM IIR数字滤波器的DCGA优化
频率响应掩蔽(FRM)技术可以显著降低锐利过渡带数字滤波器的计算复杂度。本文提出了一种利用奇阶椭圆最小q因子(EMQF)原型数字滤波器设计和优化保证BIBO稳定FRM IIR低通数字滤波器的新技术。采用双线性ldi设计方法,将原型数字滤波器实现为一对数字全通网络的并联组合。采用分集控制遗传算法(DCGA)在正则符号数乘子系数空间上对双线性ldi FRM - IIR数字滤波器进行优化。采用一种基于lut的方案来保证得到的FRM IIR数字滤波器在DCGA优化过程中是自动BIBO稳定的。将该方法应用于五阶低通椭圆型FRM IIR数字滤波器的优化,得到了300次迭代左右的快速收敛速度。
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