Log Transform Based Optimal Image Enhancement Using Firefly Algorithm for Autonomous Mini Unmanned Aerial Vehicle: An Application of Aerial Photography

Author:

Samanta Sourav1,Mukherjee Amartya2,Ashour Amira S.34,Dey Nilanjan5,Tavares João Manuel R. S.6,Abdessalem Karâa Wahiba Ben47,Taiar Redha8,Azar Ahmad Taher910,Hassanien Aboul Ella11

Affiliation:

1. Department of Computer Science & Engineering, University Institute of Technology, Burdwan, Westbengal, India

2. Department of CSE and BSH, Institute of Engineering & Management, Saltlake, Kolkata, India

3. Department of Electronics & Electrical Communications Engineering, Faculty of Engineering, Tanta University, Egypt

4. College of Computers & IT, Taif University, KSA

5. Department of Information Technology, Techno India College of Technology, Rajarhat, Kolkata, India

6. Instituto de Ciência e Inovação em Engenharia Mecânica e Engenharia Industrial, Departamento de Engenharia Mecânica, Faculdade de Engenharia, Universidade do Porto, Rua Dr. Roberto Frias, s/n, 4200-465 Porto, Portugal

7. RIADI-GDL Laboratory, Tunisia

8. Université de Reims Champagne Ardennes, France

9. Faculty of Computers and Information, Benha University, Egypt

10. Nile University, 6th of October City, Egypt

11. Cairo University, Faculty of Computers and Information, Scientific Research Group in Egypt, Cairo, Egypt

Abstract

The Unmanned Aerial Vehicles (UAV) are widely used for capturing images in border area surveillance, disaster intensity monitoring, etc. An aerial photograph offers a permanent recording solution as well. But rapid weather change, low quality image capturing equipments results in low/poor contrast images during image acquisition by Autonomous UAV. In this current study, a well-known meta-heuristic technique, namely, Firefly Algorithm (FA) is reported to enhance aerial images taken by a Mini Unmanned Aerial Vehicle (MUAV) via optimizing the value of certain parameters. These parameters have a wide range as used in the Log Transformation for image enhancement. The entropy and edge information of the images is used as an objective criterion for evaluating the image enhancement of the proposed system. Inconsistent with the objective criterion, the FA is used to optimize the parameters employed in the objective function that accomplishes the superlative enhanced image. A low-light imaging has been performed at evening time to prove the effectiveness of the proposed algorithm. The results illustrate that the proposed method has better convergence and fitness values compared to Particle Swarm Optimization. Therefore, FA is superior to PSO, as it converges after a less number of iterations.

Publisher

World Scientific Pub Co Pte Lt

Subject

Computer Graphics and Computer-Aided Design,Computer Science Applications,Computer Vision and Pattern Recognition

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