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Filter architectures and adaptive algorithms for 2-D adaptive digital signal processing

机译:二维自适应数字信号处理的滤波器架构和自适应算法

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A 2-D adaptive filter structure based on the McClellan transformation design technique for 2-D FIR (finite impulse response) filters is proposed as a means of achieving improved performance. Performance is compared with that of a direct-form 2-D LMS (least mean squares) structure in terms of learning characteristics and computational efficiency. It is shown that if the transformation structure is constrained by a priori knowledge of contour shapes in the frequency domain, the 2-D adaptive algorithm greatly reduces computational requirements and improves the learning characteristics, as compared with the direct form. The transformation filter is then generalized by including the contour parameters in the adaptive parameter set to eliminate the constraints on the frequency domain contours. It is shown how an orthogonal transformation can be included to improve the convergence rate of the constrained transformation structure.
机译:提出了一种基于麦克莱伦变换设计技术的2-D FIR(有限脉冲响应)滤波器的2-D自适应滤波器结构,作为提高性能的一种手段。在学习特征和计算效率方面,将性能与直接形式的2维LMS(最小均方)结构进行了比较。结果表明,如果变换结构受到频域轮廓形状的先验知识的约束,则与直接形式相比,二维自适应算法大大降低了计算需求并改善了学习特性。然后通过将轮廓参数包括在自适应参数集中以消除对频域轮廓的约束,来对变换滤波器进行概括。它显示了如何包含正交变换以提高约束变换结构的收敛速度。

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