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Summary LNCS 3024 Seamless Image Stitching in the Gradient Domain 1st edition by Anat Levin, Assaf Zormet, Shrmuel Peleg, Yair Weiss ISBN - PDF Download

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3540219811 978-3540219811 pdf download
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, Seamless Image Stitching in the Gradient
Domain

Anat Levin, Assaf Zomet , Shmuel Peleg, and Yair Weiss

School of Computer Science and Engineering
The Hebrew University of Jerusalem
91904, Jerusalem, Israel
{alevin,peleg,yweiss}@cs.huji.ac.il,



Abstract. Image stitching is used to combine several individual im-
ages having some overlap into a composite image. The quality of image
stitching is measured by the similarity of the stitched image to each of
the input images, and by the visibility of the seam between the stitched
images.
In order to define and get the best possible stitching, we introduce several
formal cost functions for the evaluation of the quality of stitching. In
these cost functions, the similarity to the input images and the visibility
of the seam are defined in the gradient domain, minimizing the disturbing
edges along the seam. A good image stitching will optimize these cost
functions, overcoming both photometric inconsistencies and geometric
misalignments between the stitched images.
This approach is demonstrated in the generation of panoramic images
and in object blending. Comparisons with existing methods show the
benefits of optimizing the measures in the gradient domain.


1 Introduction
Image stitching is a common practice in the generation of panoramic images and
applications such as object insertion, super resolution [1] and texture synthesis
[2]. An example of image stitching is shown in Figure 1. Two images I1 ,I2 capture
different portions of the same scene, with an overlap region viewed in both
images. The images should be stitched to generate a mosaic image I. A simple
pasting of a left region from I1 and a right region from I2 produces visible
artificial edges in the seam between the images, due to differences in camera
gain, scene illumination or geometrical misalignments.
The aim of a stitching algorithm is to produce a visually plausible mosaic
with two desirable properties: First, the mosaic should be as similar as possible
to the input images, both geometrically and photometrically. Second, the seam
between the stitched images should be invisible. While these requirements are

This research was supported (in part) by the EU under the Presence Initiative
through contract IST-2001-39184 BENOGO.

Current Address: Computer Science Department, Columbia University, 500 West
120th Street, New York, NY 10027

T. Pajdla and J. Matas (Eds.): ECCV 2004, LNCS 3024, pp. 377–389, 2004.

c Springer-Verlag Berlin Heidelberg 2004

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