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Low-Power Decimator Design Using Approximated Linear-Phase N-Band IIR Filter

机译:使用近似线性N波段IIR滤波器的低功耗抽取器设计

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This correspondence presents a new design of a low-power decimation filter, which consists of a poly-phase finite-impulse-response (FIR)-4 comb filter, an approximate linear-phase one-third-band infinite-impulse-response (IIR) filter, and a half-band FIR filter. A poly-phase FIR-4 comb filter architecture was designed, which consumes 75percent less power than the recursive comb filter architecture. New general equations were derived for the design of 1/N-band IIR filters, and these equations were used to design a novel approximate linear-phase one-third-band IIR filter. The decimation filter is designed using Simulink and DSP Blockset, and Matlab simulations are performed to verify the phase linearity and magnitude response of the designed filter. The group delay for the passband region of one-third-band IIR filter has a negligible error of 0.009percent. The resulting decimation filter has 60percent less hardware and consumes 67percent less power than the comb-FIR-FIR decimation filter.
机译:该对应关系提出了一种低功耗抽取滤波器的新设计,该滤波器包括一个多相有限冲激响应(FIR)-4梳状滤波器,一个近似线性相位的三分之一带无限冲激响应( IIR)滤波器和半带FIR滤波器。设计了一种多相FIR-4梳状滤波器架构,其功耗比递归梳状滤波器架构少75%。推导了用于1 / N波段IIR滤波器设计的新通用方程式,这些方程式用于设计一种新颖的近似线性相位三分之一波段IIR滤波器。抽取滤波器是使用Simulink和DSP Blockset设计的,并且通过Matlab仿真来验证所设计滤波器的相位线性度和幅度响应。三分之一频带IIR滤波器的通带区域的群时延具有0.005%的可忽略误差。与梳状FIR-FIR抽取滤波器相比,所得抽取滤波器的硬件少60%,功耗也少67%。

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