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Stable and efficient lattice algorithms for adaptive IIR filtering

机译:用于自适应IIR滤波的稳定高效的点阵算法

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Previous attempts at applying lattice structures to adaptive infinite-impulse-response (IIR) filtering have met with gradient computations of O(N/sup 2/) complexity. To overcome this computational burden, two new lattice-based algorithms are proposed for adaptive IIR filtering and system identification, with both algorithms of O(N) complexity. The first algorithm is a reinterpretation of the Steiglitz-McBride method (1965), while the second is a variation on the output error method. State space models are employed to make the derivations transparent, and the methods can be extended to other parameterizations if desired. The set of possible stationary points of the algorithms is shown to be consistent with the convergent points obtained from the direct-form versions of the Steiglitz-McBride and output error methods, whose properties are well studied. The derived algorithms are as computationally efficient as existing direct-form based algorithms, while overcoming the stability problems associated with time-varying direct-form filters.
机译:先前将晶格结构应用于自适应无限冲激响应(IIR)滤波的尝试已经遇到了O(N / sup 2 /)复杂度的梯度计算。为了克服这种计算负担,提出了两种基于晶格的新算法用于自适应IIR滤波和系统识别,两种算法的复杂度均为O(N)。第一种算法是对Steiglitz-McBride方法(1965)的重新解释,而第二种算法是输出误差方法的变体。使用状态空间模型使推导透明,如果需要,可以将方法扩展到其他参数化。该算法可能的固定点集与从Steiglitz-McBride的直接形式版本和输出误差方法获得的收敛点一致,并且对它们的性质进行了深入研究。导出的算法与现有的基于直接形式的算法在计算效率上一样,同时克服了与时变直接形式滤波器相关的稳定性问题。

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