Fusion of Edge-less and Edge-based Approaches for Horizon Line Detection

被引:0
|
作者
Ahmad, Touqeer [1 ]
Bebis, George [1 ]
Nicolescu, Monica [1 ]
Nefian, Ara [2 ]
Fong, Terry [2 ]
机构
[1] Univ Nevada, Dept Comp Sci & Engn, Reno, NV 89557 USA
[2] NASA, Ames Res Ctr, Washington, DC 20546 USA
关键词
D O I
暂无
中图分类号
TP301 [理论、方法];
学科分类号
081202 ;
摘要
Horizon line detection requires finding a boundary which segments an image into sky and non-sky regions. It has many applications including visual geo-localization and geo-tagging, robot navigation/localization, and ship detection and port security. Recently, two machine learning based approaches have been proposed for horizon line detection: one relying on edge classification and the other relying on pixel classification. In the edge-based approach, a classifier is used to refine the edge map by removing non-horizon edges. The refined edge map is then used to form a multi-stage graph where dynamic programming is applied to extract the horizon line. In the edge-less approach, classification is used to obtain a confidence of horizon-ness at each pixel location. The horizon line is then extracted by applying dynamic programming on the resultant dense classification map rather than on the edge map. Both approaches have shown to outperform the classical approach where dynamic programming is applied on the non-refined edge map. In this paper, we provide a comparison between the edge-less and edge-based approaches using two challenging data sets. Moreover, we propose fusing the information about the horizon-ness and edge-ness of each pixel. Our experimental results illustrate that the proposed fusion approach outperforms both the edge-based and edge-less approaches.
引用
收藏
页数:6
相关论文
共 50 条
  • [31] Edge-Based Image Coarsening
    Fattal, Raanan
    Carroll, Robert
    Agrawala, Maneesh
    ACM TRANSACTIONS ON GRAPHICS, 2009, 29 (01):
  • [32] Edge-based procedural textures
    Hansoo Kim
    Jean-Michel Dischler
    Holly Rushmeier
    Bedrich Benes
    The Visual Computer, 2021, 37 : 2595 - 2606
  • [33] Edge-based image steganography
    Islam, Saiful
    Modi, Mangat R.
    Gupta, Phalguni
    EURASIP JOURNAL ON INFORMATION SECURITY, 2014, Springer International Publishing (01):
  • [34] Edge-based platoon control
    Quadri, Christian
    Mancuso, Vincenzo
    Marsan, Marco Ajmone
    Rossi, Gian Paolo
    COMPUTER COMMUNICATIONS, 2022, 181 : 17 - 31
  • [35] EDGE-BASED TEXTURE MEASURES
    PIETIKAINEN, MK
    ROSENFELD, A
    IEEE TRANSACTIONS ON SYSTEMS MAN AND CYBERNETICS, 1982, 12 (04): : 585 - 594
  • [36] Edge-based image segmentation
    Farag, Aly A.
    Remote Sensing Reviews, 1992, 6 (1-4):
  • [37] Edge-based procedural textures
    Kim, Hansoo
    Dischler, Jean-Michel
    Rushmeier, Holly
    Benes, Bedrich
    VISUAL COMPUTER, 2021, 37 (9-11): : 2595 - 2606
  • [38] Edge-based differentiated services
    Lundqvist, H
    Ivars, IM
    Karlsson, G
    QUALITY OF SERVICE - IWQOS 2005, PROCEEDINGS, 2005, 3552 : 259 - 270
  • [39] Edge-based adaptive smoothing
    Crespo, J
    Schafer, RW
    OPTICAL ENGINEERING, 1997, 36 (11) : 3081 - 3092
  • [40] Edge-based image restoration
    Rares, A
    Reinders, MJT
    Biemond, J
    IEEE TRANSACTIONS ON IMAGE PROCESSING, 2005, 14 (10) : 1454 - 1468