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Implement Multichannel Fractional Sample Rate Convertor using Genetic Algorithm

机译:用遗传算法实现多通道分数采样率转换器。

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In this paper reduce power of multichannel fractional sample rate convertor by minimized hamming distance between consecutive coefficients of filter using Genetic algorithm. The main component of multichannel fractional sample rate convertor is Cascaded multiple architecture finite impulse response filter (CMFIR filter). CMFIR is implemented by cascading of cascaded integrator-comb (CIC) & multiply accumulate architecture (MAC) FIR filter. Genetic algorithm minimizes the hamming distance between consecutive coefficients of CMFIR filter. By Minimizing the hamming distance of consecutive filter coefficient reduces the transaction from 0 to 1 or 1 to 0. These techniques reduce the switching activity of CMOS transistor which is directly reduces Dynamic power consumption by multichannel sample rate convertor, it also minimizes the total power consumption of multichannel fractional sample rate convertor. later than use genetic algorithm on 1 to 128 channel Down sample rate convertor total power reduced by 3.44% to 61.56%, dynamic power reduced by 9.09% to 56.25% .1 to 128 channel Up sample rate convertor total power reduced by 2.81% to 45.42%, dynamic power reduced by 4.76% to 56%, 1 to 128 channel fractional sample rate convertor total power reduced by 1.44% to 17.17%, dynamic power reduced by 6.25% to 19.92%.
机译:本文采用遗传算法,通过使滤波器的连续系数之间的汉明距离最小化来降低多通道分数采样率转换器的功率。多通道分数采样率转换器的主要组件是级联多体系结构有限脉冲响应滤波器(CMFIR滤波器)。 CMFIR是通过级联积分梳(CIC)和乘累加架构(MAC)FIR滤波器的级联实现的。遗传算法使CMFIR滤波器的连续系数之间的汉明距离最小。通过最小化连续滤波器系数的汉明距离,可以将事务从0减少到1或从1减少到0。这些技术减少了CMOS晶体管的开关活动,这直接降低了多通道采样率转换器的动态功耗,同时也使总功耗最小化多通道分数采样率转换器的功能。迟于在1至128通道上使用遗传算法的时间,下采样率转换器的总功率降低了3.44%至61.56%,动态功率降低了9.09%至56.25%。0.1至128通道的上采样率的转换器总功率降低了2.81%至45.42 %,动态功率降低4.76%至56%,1至128通道分数采样率转换器的总功率降低1.44%至17.17%,动态功率降低6.25%至19.92%。

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