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A new local search method to design finite precision FIR filters

机译:设计有限精度FIR滤波器的新局部搜索方法

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This paper proposes a new local search method for the design of FIR filters with low complexity finite precision coefficients based on the optimality criterion of peak constrained least squares. In order to improve search efficient and reduce invalid search steps, the proposed method adjusts the coefficient offsetting strategy conditionally and utilizes the geometric properties of the object function ε(h) that describes a hyper-ellipse. If the search point is inside ε(h), it is selected, so the search trapped in an infeasible region is avoided. The tradeoff between coefficient complexity and PSR is got. Numerical experiments show that the proposed method holds better performance than the existed methods in terms of the search efficiency.
机译:基于峰值约束最小二乘的最优准则,为低复杂度有限精度系数的FIR滤波器的设计提出了一种新的局部搜索方法。为了提高搜索效率并减少无效搜索步骤,该方法有条件地调整了系数补偿策略,并利用了描述超椭圆的目标函数ε(h)的几何特性。如果搜索点在ε(h)内,则将其选中,这样可以避免陷入不可行区域的搜索。得到了系数复杂度和PSR之间的折衷。数值实验表明,与现有方法相比,该方法具有更好的搜索效率。

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