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A modified micro-genetic algorithm for the design of multiplierless digital FIR filters

机译:用于无倍数数字FIR滤波器设计的改进微遗传算法

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In this paper, a modified micro-genetic algorithm (/spl mu/GA) is presented for the design of digital finite impulse response filters with coefficient values constrained to sum of signed powers-of-two terms. Since such implementation requires no multipliers, it reduces the hardware cost and lowers the power consumption. The GA overcomes the drawback of the conventional GA of long computation time by utilizing a small population. To avoid trapping into local optimum and improve the convergence speed of /spl mu/GA, the proposed /spl mu/GA includes a strategy that varies the probabilities of crossover and mutation during the evolution. Compared to conventional GA (CGA) the proposed /spl mu/GA speeds up the optimization process significantly, it is shown, by means of example, that the proposed method is about 7 times faster than the CGA and results a better design compared with the mixed integer linear programming (MILP) based design.
机译:在本文中,提出了一种改进的微遗传算法(/ spl mu / GA),其设计用于将系数值约束为有符号二次幂之和的数字有限冲激响应滤波器。由于这种实现不需要乘法器,因此降低了硬件成本并降低了功耗。通过使用少量的种群,遗传算法克服了传统遗传算法计算时间长的缺点。为了避免陷入局部最优并提高/ spl mu / GA的收敛速度,建议的/ spl mu / GA包括一种在进化过程中改变交叉和突变概率的策略。与常规GA(CGA)相比,所提出的/ spl mu / GA显着加快了优化过程,通过示例的方式表明,所提出的方法比CGA快7倍左右,并且与之相比,其设计效果更好。基于混合整数线性规划(MILP)的设计。

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