Title :
An energy efficient time-sharing pyramid pipeline for multi-resolution computer vision
Author :
Qiuling Zhu ; Garg, Nidhi ; Yun-Ta Tsai ; Pulli, Kari
Author_Institution :
Dept. of Electr. & Comp. Eng., Carnegie Mellon Univ., Pittsburgh, PA, USA
Abstract :
We introduce an energy efficient time-sharing pyramid pipeline architecture designed for multi-resolution image analysis in mobile computer vision. The time-sharing pipeline efficiently reduces the off-chip memory traffic by re-organizing the data storage and processing order of an image pyramid. We build a parameterized image pyramid hardware generator and successfully evaluate the overall pyramid design space. Our results demonstrate that the time-sharing pyramid pipeline achieves about 50% of hardware savings in terms of area and power consumption compared to the traditional linear pipeline implementation. We also implement the multi-resolution Lucas-Kanade optical flow algorithm on the time-sharing pipeline, and demonstrate an order of magnitude savings in off-chip memory traffic and system energy consumption.
Keywords :
computer vision; energy conservation; image resolution; image sequences; pipeline processing; power consumption; storage management; area consumption; data storage reorganization; energy efficient time-sharing pyramid pipeline architecture; hardware savings; linear pipeline implementation; magnitude savings; mobile computer vision; multiresolution Lucas-Kanade optical flow algorithm; multiresolution computer vision; multiresolution image analysis; off-chip memory traffic; parameterized image pyramid hardware generator; power consumption; pyramid design space; system energy consumption; image pyramid; multi-resolution computer vision; optical flow; pipeline; time-sharing;
Conference_Titel :
Very Large Scale Integration (VLSI-SoC), 2013 IFIP/IEEE 21st International Conference on
Conference_Location :
Istanbul
DOI :
10.1109/VLSI-SoC.2013.6673289