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A novel approach for coefficient quantization of low-pass finite impulse response filter using differential evolution algorithm - Springer

机译:一种采用差分演化算法的低通有限冲激响应滤波器系数量化的新方法-Springer

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摘要

Evolutionary computational techniques have been employed judiciously in various signal processing applications of late. In this paper, such an attempt has been made to design a low-pass linear-phase multiplier-less finite duration impulse response (FIR) filter using differential evolution (DE) algorithm. This particular evolutionary optimization technique has been explored to search the impulse response coefficients of the FIR filter in the form of sum of power of two (SPT) in order to avoid the multipliers during design process. The performance of the designed low-pass filter has been studied thoroughly in terms of its frequency characteristics and primitive requirement of fundamental hardware blocks. The superiority of our design has been ascertained over a number of existing techniques by various means. Finally, the proposed filter of different lengths has been implemented on a field programmable gate array (FPGA) chip for evaluating the competency of this work. The percentage improvement in hardware complexity produced by our design has also been computed and clearly listed in this paper for convenience.
机译:最近,在各种信号处理应用中明智地采用了进化计算技术。在本文中,已经尝试使用差分进化(DE)算法设计低通线性相位无乘数有限持续时间脉冲响应(FIR)滤波器。为了避免在设计过程中产生乘数,已经探索了这种特定的进化优化技术来搜索FIR滤波器的脉冲响应系数,其形式为二乘幂(SPT)。就其频率特性和基本硬件模块的基本要求而言,已对所设计的低通滤波器的性能进行了全面研究。我们已经通过多种手段确定了我们设计的优越性。最后,在现场可编程门阵列(FPGA)芯片上实现了所建议长度的滤波器,以评估这项工作的能力。为了方便起见,我们还计算了我们设计产生的硬件复杂度提高的百分比,并在本文中明确列出。

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