TY - JOUR T1 - A New Detail Preserving Neural Median Filter with Reduced Streaking and False Alarm for Impulse Noise Suppression in Images AU - , S. Manikandan AU - , D. Ebenezer JO - International Journal of Soft Computing VL - 2 IS - 1 SP - 186 EP - 190 PY - 2007 DA - 2001/08/19 SN - 1816-9503 DO - ijscomp.2007.186.190 UR - https://makhillpublications.co/view-article.php?doi=ijscomp.2007.186.190 KW - Recursive weighted median filter KW -back propagation algorithm KW -universal approximation theorem KW -impulsive noise KW -adaptive window KW -noise removal AB - A new impulse detection algorithm is proposed which can successfully remove impulse noise from corrupted images while preserving image details; streaking is also reduced. The algorithm is an appropriate combination of impulse detection algorithm and a Recursive Weighted Median [RWM] filter whose weights are calculated by back propagation algorithm based on universal approximation theorem. The main advantage of the algorithm is that it detects both positive and negative impulses with high accuracy while reducing the probability of falsely detecting image details as impulses. Results show that the proposed algorithm is more effective in terms of visual appreciation, noise suppression and mean squared error performance compared with standard median filtering, general recursive weighted median filtering and adaptive length median filtering. ER -