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首页> 外文期刊>Journal of industrial and management optimization >VARIABLE FRACTIONAL DELAY FILTER DESIGN WITH DISCRETE COEFFICIENTS
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VARIABLE FRACTIONAL DELAY FILTER DESIGN WITH DISCRETE COEFFICIENTS

机译:离散系数的可变分数延迟滤波器设计

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摘要

This paper investigates the optimal design of variable fractional delay (VFD) filter with discrete coefficients as a means of achieving low complexity and efficient hardware implementation. The filter coefficients are expressed as the sum of signed power-of-two (SPT) terms with a restriction on the total number of power-of-two terms. An optimization problem with least squares criterion is formulated as a mixed-integer programming problem. An optimal scaling factor quantization scheme is applied to the problem resulting in an optimal scaling factor quantized solution. This solution is then improved further by applying a discrete filled function, that has been extended for a mixed integer optimization problem. To apply the discrete filled function method, it requires multiple calculations of the objective function around the neighborhood of a searched point. Thus, an updating scheme is developed to efficiently calculate the objective function in a neighborhood of a point. Design examples demonstrate the effectiveness of the proposed optimization approach.
机译:本文研究了具有离散系数的可变分数延迟(VFD)滤波器的优化设计,以实现低复杂度和高效的硬件实现。滤波器系数表示为带符号的二项幂(SPT)项的总和,但对二项幂的总数有限制。将具有最小二乘准则的优化问题表述为混合整数规划问题。最佳比例因子量化方案应用于该问题,从而得到最佳比例因子量化解。然后,通过应用离散填充函数对该解决方案进行进一步改进,该函数已针对混合整数优化问题进行了扩展。要应用离散填充函数方法,它需要围绕搜索点的邻域对目标函数进行多次计算。因此,开发了一种更新方案以有效地计算点附近的目标函数。设计实例证明了所提出的优化方法的有效性。

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