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A true order recursive algorithm for two-dimensional mean squared error linear prediction and filtering

机译:二维均方误差线性预测与滤波的真阶递归算法

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摘要

In this paper a novel algorithm is presented for the efficient two-dimensional (2-D), mean squared error (MSE), FIR filtering and system identification. Filter masks of general boundaries are allowed. Efficient order updating recursions are developed by exploiting the spatial shift invariance property of the 2-D data set. Single-step-order updating recursions are developed. During each iteration, the filter coefficients set is augmented by a single new element. The single-step-order updating formulas allow for the development of an efficient, true order recursive algorithm for the 2-D MSE linear prediction and filtering. In contrast to the existing column(row)wise 2-D recursive schemes based on the Levin- son-Wiggins-Robinson multichannel algorithm, the proposed technique offers the greatest maneuverability in the 2-D index space in a computational efficient way. This flexibility can be taken into advantage if the shape of the 2-D mask is not a priori known and has to be dynamically configured. The recursive character of the algorithm allows for a continuous reshaping of the filter mask. Search for the optimal filter mask, essentially reconfigures the filter mask to achieve an optimal match. The optimum determination of the mask shape offers important advantages in 2-D system modeling, filtering and image restoration. An illustrative example from 2-D autoregressive spectrum estimation is also supplied.
机译:本文提出了一种有效的二维(2-D),均方误差(MSE),FIR滤波和系统识别的新算法。允许使用一般边界的过滤器掩码。通过利用二维数据集的空间平移不变性,可以开发出有效的订单更新递归。开发了单步顺序更新递归。在每次迭代期间,滤波器系数集都会由一个新元素来增加。单步阶更新公式可为二维MSE线性预测和滤波开发有效的,真阶递归算法。与基于Levinson-Wiggins-Robinson多通道算法的现有按列(行)二维递归方案相比,所提出的技术以高效计算的方式在二维索引空间中提供了最大的可操作性。如果二维掩膜的形状不是先验已知的并且必须动态配置,则可以利用这种灵活性。该算法的递归特征允许对滤光罩进行连续整形。搜索最佳滤波器蒙版,实质上是重新配置滤波器蒙版以实现最佳匹配。掩模形状的最佳确定在二维系统建模,滤波和图像恢复中提供了重要的优势。还提供了二维自回归谱估计的示例。

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