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Meta-heuristic evolutionary algorithms for the design of optimal multiplier-less recombination filter banks

机译:用于优化无乘子重组滤波器组的元启发式进化算法

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This paper proposes a design for multiplier-less recombination non-uniform filter banks (RNUFBs) optimized using meta-heuristic algorithms. The structure consists of an M-channel uniform filter bank, with some channels combined by the synthesis filters of a transmultiplexer (TMUX), yielding non-uniform sub-bands. When any structure is realized in hardware, it is necessary to have low power consumption and a small chip area. These can be achieved by replacing the multipliers with shifters and adders. Once the continuous coefficient recombination non-uniform filter bank is designed, the coefficients are converted to the canonic-signed-digit (CSD) space to make the design multiplier-less, so as to reduce the complexity of the hardware implementation. To reduce the number of adders and shifters in the multiplier-less implementation, the filter coefficients are rounded with a restricted number of signed power-of-two (SPT) terms, which may cause degradation in the performance of the RNUFBs. To improve the performance of the CSD rounded filters and filter bank, meta-heuristic algorithms such as the artificial bee colony (ABC) algorithm, harmony search algorithm (HSA) and gravitational search algorithm (GSA) are deployed. Of these meta-heuristic algorithms, GSA is found to give the best performance. The method proposed in this paper results in non-uniform filter banks with rational sampling factors which are multiplier-less and have linear-phase and near-perfect-reconstruction. (C) 2016 Elsevier Inc. All rights reserved.
机译:本文提出了一种利用元启发式算法优化的无乘法器重组非均匀滤波器组(RNUFB)的设计。该结构由一个M通道均匀滤波器组组成,其中一些通道​​由一个多路复用器(TMUX)的合成滤波器组合在一起,从而产生不均匀的子带。当以硬件实现任何结构时,必须具有低功耗和小芯片面积。这些可以通过用移位器和加法器代替乘法器来实现。一旦设计了连续系数重组非均匀滤波器组,就将系数转换到规范符号空间(CSD),以使设计成为无乘法器,从而降低了硬件实现的复杂性。为了减少无乘法器实现中的加法器和移位器的数量,请使用有限数量的有符号二乘幂(SPT)项对滤波器系数进行舍入,这可能会导致RNUFB的性能下降。为了提高CSD舍入滤波器和滤波器组的性能,部署了元启发式算法,例如人工蜂群(ABC)算法,和声搜索算法(HSA)和重力搜索算法(GSA)。在这些元启发式算法中,发现GSA具有最佳性能。本文提出的方法导致具有不合理的采样因子的非均匀滤波器组,该采样因子是无乘数的,并且具有线性相位和接近完美的重构。 (C)2016 Elsevier Inc.保留所有权利。

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