DocumentCode
73517
Title
Block Region of Interest Method for Real-Time Implementation of Large and Scalable Image Reconstruction
Author
Lin Li ; Feng Yu
Author_Institution
Zhejiang Univ., Hangzhou, China
Volume
22
Issue
11
fYear
2015
fDate
Nov. 2015
Firstpage
1908
Lastpage
1912
Abstract
In field programmable gate array (FPGA)-based reconstruction of high-resolution (several-gigabyte) images, architectures that store the entire source image in block memory are no longer feasible. In this letter, a block region of interest (ROI) method is proposed for large and scalable image reconstruction, using 2D 4 × 4 truncated sinc interpolation by storing only a slice of the source image in block memory. To ensure a high hit rate in block memory for interpolation and improve memory access efficiency, this method provides an effective criterion for partitioning, which subdivides the output image into blocks based on the ROI in the source image. Moreover, a special storage pattern is designed to simultaneously provide 16 pixels for each interpolation to enable real-time implementation by full pipelining with no memory data redundancy. The proposed method was validated by experimental results on an FPGA board along with the corresponding simulations on MATLAB. Various image sizes were tested to prove its flexibility. The time required to reconstruct an output image of 32 k × 32 k at 200 MHz was 2.79 s, thereby achieving a processing speed of 385 Mpixels/s in single floating point precision.
Keywords
field programmable gate arrays; image reconstruction; interpolation; real-time systems; FPGA; MATLAB; ROI method; block memory; block region; field programmable gate array; floating point precision; interest method; memory data redundancy; real-time implementation; region of interest; scalable image reconstruction; source image; truncated sinc interpolation; Field programmable gate arrays; Image reconstruction; Interpolation; Memory management; Real-time systems; Redundancy; SDRAM; 2D sinc interpolation; block region of interest (ROI); large-image reconstruction; real-time implementation; scalable;
fLanguage
English
Journal_Title
Signal Processing Letters, IEEE
Publisher
ieee
ISSN
1070-9908
Type
jour
DOI
10.1109/LSP.2015.2435803
Filename
7111236
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