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A new approach to designing computationally efficient interpolated FIR filters

机译:设计计算效率高的内插FIR滤波器的新方法

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More efficient use of multipliers in FIR filters can be achieved at the expense of a slight increase in delay by designing sparse filter structures. We have developed a new, relatively simple approach to designing sparse cascaded filters, also described in the literature as interpolated FIR filters. Our method is heuristic in nature, but gives surprisingly good results without requiring iterative design or investigation of a large number of alternative parameterizations. The design uses the efficient and widely available Remez exchange algorithm along with some routines that we have written for Matlab. Although the resulting designs are not optimal in a minimax-error sense, they have reduced RMS error, which may be attractive for some applications. We give design examples, and study the effects of coefficient quantization.
机译:通过设计稀疏滤波器结构,可以以略微增加延迟的代价为代价,在FIR滤波器中更有效地使用乘法器。我们已经开发了一种设计相对稀疏的级联滤波器的相对简单的新方法,在文献中也将其描述为插值FIR滤波器。我们的方法本质上是启发式的,但是却给出了令人惊讶的良好结果,而无需进行迭代设计或研究大量替代参数设置。该设计使用了有效且广泛可用的Remez交换算法,以及我们为Matlab编写的一些例程。尽管最终的设计在最小最大误差的意义上并不是最佳的,但它们具有减小的RMS误差,这对于某些应用可能很有吸引力。我们给出设计示例,并研究系数量化的效果。

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