Title :
Data-Driven Season Characteristic Enhancement of Natural Image
Author :
Feng Ding ; Jianwei Li ; Dongqing Zou ; Xiaowu Chen
Author_Institution :
State Key Lab. of Virtual Reality Technol., Beihang Univ., Beijing, China
Abstract :
We present a system of creating new scenes in different seasons from an input image captured in a particular season by stylizing it according to similar images in our library which includes a vast number of different season scenes and objects. Firstly, we transfer the color appearance of the input scene in accordance with the color style of other seasons scenes by using color transfer approach. Secondly, user scribbles are used to guide the detection of repeated elements in the input image and geometric information of these detected elements are obtained. Then context-sensitive objects of specified class that match most of the required properties are retrieved from our library and edited according to the geometric information of the specified elements in the scene, such as inserting new objects into the scene or replacing objects by new ones. After that, a repeated-elements-based modification duplication scheme is proposed and implemented to semi-automatically propagate the user-specified objects modification. Finally, blending is applied to the inserted objects to achieve consistency with the target scene in illumination. The main contribution of this work is that we present a complete system to create new scenes of different seasons.
Keywords :
image colour analysis; image enhancement; image retrieval; natural scenes; color appearance; color style; color transfer approach; context-sensitive object retrieval; data-driven season characteristic enhancement; geometric information; illumination; input image; input scene; natural image enhancement; repeated-elements-based modification duplication scheme; season objects; season scenes; target scene; user scribbles; user-specified object modification; Estimation; Image color analysis; Image segmentation; Libraries; Lighting; Semantics; Springs; color transfer; edit propagation; repeated elements;
Conference_Titel :
Image and Graphics (ICIG), 2013 Seventh International Conference on
Conference_Location :
Qingdao
DOI :
10.1109/ICIG.2013.186