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Self-Reconfigurable Evolvable Hardware System for Adaptive Image Processing

delete2013-08-01
delete38
PRE
AI
R
Rubén Salvador *
A
A. Otero
J
Javier Mora
E
Eduardo de la Torre
T
Teresa Riesgo
L
Lukáš Sekanina
DOI:10.1109/TC.2013.78delete
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Abstract

Abstract

En 中文
This paper presents an evolvable hardware system, fully contained in an FPGA, which is capable of autonomously generating digital processing circuits, implemented on an array of processing elements (PEs). Candidate circuits are generated by an embedded evolutionary algorithm and implemented by means of dynamic partial reconfiguration, enabling evaluation in the final hardware. The PE array follows a systolic approach, and PEs do not contain extra logic such as path multiplexers or unused logic, so array performance is high. Hardware evaluation in the target device and the fast reconfiguration engine used yield smaller reconfiguration than evaluation times. This means that the complete evaluation cycle is faster than software-based approaches and previous evolvable digital systems. The selected application is digital image filtering and edge detection. The evolved filters yield better quality than classic linear and nonlinear filters using mean absolute error as standard comparison metric. Results do not only show better circuit adaptation to different noise types and intensities, but also a nondegrading filtering behavior. This means they may be run iteratively to enhance filtering quality. These properties are even kept for high noise levels (40 percent). The system as a whole is a step toward fully autonomous, adaptive systems.
Keywords:
Evolvable hardware
FPGAs
self-adaptive systems
reconfigurable hardware
adaptable architectures
autonomous systems
evolutionary computing and genetic algorithms

Journal

IEEE Transactions on Computers cover
IEEE Transactions on Computers
IF:
3.8
Papers:
5.3K
Citations:
9.8K

Organization

U
Universidad Politecnica de Madrid
Scholars:
1.4W
Papers: 1.2W
Citations: 10
B
Brno University of Technology
Scholars:
5.7K
Papers: 4.7K
Citations: 5.7K