Title :
Efficient parallel implementation of morphological operation on GPU and FPGA
Author :
Teng Li ; Yong Dou ; JingFei Jiang ; Jing Gao
Author_Institution :
Nat. Lab. for Parallel & Distrib. Process., Nat. Univ. of Defense & Technol., Changsha, China
Abstract :
Morphological operation constitutes one of a powerful and versatile image and video applications applied to a wide range of domains, from object recognition, to feature extraction and to moving objects detection in computer vision where real-time and high-performance are required. However, the throughput of morphological operation is constrained by the convolutional characteristic. In this paper, we analysis the parallelism of morphological operation and parallel implementations on the graphics processing unit (GPU), and field programming gate array (FPGA) are presented. For GPU platform, we propose the optimized schemes based on global memory, texture memory and shared memory, achieving the throughput of 942.63 Mbps with 3×3 structuring element. For FPGA platform, we present an optimized method based on the traditional delay-line architecture. For 3×3 structuring element, it achieves a throughput of 462.64 Mbps.
Keywords :
computer vision; feature extraction; field programmable gate arrays; graphics processing units; image morphing; object detection; object recognition; video signal processing; FPGA platform; GPU platform; computer vision; delay-line architecture; feature extraction; field programming gate array; global memory; graphics processing unit; morphological operation; moving object detection; object recognition; shared memory; texture memory; versatile image; video applications; Field programmable gate arrays; Graphics processing units; Instruction sets; Morphological operations; Optimization; Random access memory; Throughput; Computer vision; FPGA; GPU; Morphological operation;
Conference_Titel :
Security, Pattern Analysis, and Cybernetics (SPAC), 2014 International Conference on
Conference_Location :
Wuhan
Print_ISBN :
978-1-4799-5352-3
DOI :
10.1109/SPAC.2014.6982728