Fast Video Stabilization Algorithms

Abstract

A fast and robust electronic video stabilization algorithm is presented in this thesis. It is based on a two-dimensional feature-based motion estimation technique. The method tracks a small set of features and estimates the movement of the camera between consecutive frames. It is used to characterize the motions accurately including camera rotations between two imaging instants. An affine motion model is utilized to determine the parameters of translation and rotation between images. The determined affine transformation is then exploited to compensate for the abrupt temporal discontinuities of input image sequences. Also, a frequency domain approach is developed to estimate translations between two consecutive frames in a video sequence. Finally, a jitter detection technique to isolate vibration affected subsequence of an image sequence is presented. The experimental results of using both simulated and real images have revealed the applicability of the proposed techniques. In particular, the emphasis has been to develop real time implementable algorithms, suitable for unmanned vehicles with severe payload constraints.

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Document Details

Document Type
Technical Report
Publication Date
Jun 01, 2006
Accession Number
ADA453977

Entities

People

  • Mohammed A. Alharbi

Organizations

  • Air Force Institute of Technology

Tags

Communities of Interest

  • Air Platforms
  • C4I
  • Energy and Power Technologies
  • Ground and Sea Platforms
  • Materials and Manufacturing Processes

DTIC Thesaurus Topics

  • Air Force
  • Algorithms
  • Charge Coupled Devices
  • Detection
  • Detectors
  • Digital Images
  • Frequency
  • Frequency Domain
  • Gray Scale
  • Image Processing
  • Kalman Filters
  • Optical Images
  • Three Dimensional
  • Two Dimensional
  • Unmanned Vehicles
  • Vehicles
  • Video Images

Fields of Study

  • Engineering

Readers

  • Adaptive Control and Estimation with Uncertainty in Dynamic Systems.
  • Radar Systems Engineering.
  • Robotics and Automation.

Technology Areas

  • Autonomy
  • Microelectronics
  • Microelectronics - Microelectromechanical Systems