Improved Harris' Algorithm for Corner and Edge Detections
Soo‐Chang Pei, Jian–Jiun Ding · 2007
A more accurate algorithm for corner and edge detections that is the improved form of the well-known Harris' algorithm is introduced. First, instead of approximating |L[m+x, n+y]-L[m, n]|2just in terms of x2, xy, and y2, we will approximate |L[m+x, n+y]-L[m, n]|(L[m+x, n+y]-L[m, n]) by the linear combination of x2, xy, y2, x, y, and 1. With the modifications, we can observe the sign of variation. It can avoid misjudging the pixel at a dot or on a ridge as a corner and is also helpful for increasing the robustness to noise. Moreover, we also use orthogonal polynomial expansion and table looking up and define the comity as the "integration" of the quadratic function to further improve the performance. From simulations, our algorithm can much reduce the probability of regarding a non-corner pixel as a corner. In addition, our algorithm is also effective for edge detection.