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Accelerating Image Processing Using Reduced Precision Calculation Convolution Engines

delete2023-05-09
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OA
AI
N
Narayan Pokhrel
S
Sakari Snäll
O
Olli I. Heimo *
U
Uruj Sarwar
A
Antti Airola
T
Tero Säntti
DOI:10.1007/s11265-023-01869-5delete
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Abstract

Abstract

En 中文
In this paper a method of accelerating image processing using convolution engines with reduced precision calculation is presented. The convolution engines are designed to be used with the Pulpissimo platform with RISC-V System-on-Chip. The aim is to move the calculation to the edge. The proposed linear convolution engines operate on 8-bit data set and the logarithmic convolution engine operates on 4-bit reduced precision data. The data reduction is done by using a logarithmic number space. Diminishing the size of the data to be processed reduces the amount of required memory, requirement for memory bandwidth, required computation, and required hardware area while simultaneously increasing the performance. This performance could benefit modern AI and image processing applications, especially in mobile and other battery-operated devices. The results show that the computation in the linear convolution engine is 91 times faster and computation in the logarithmic convolution engine is 122 times faster than in the RISC-V core with plain RISC-V instructions.
Keywords:
Convolution Engine
Image Processing
Reduced Precision Calculation
FPGA
System-on-Chip
Artificial Intelligence

Journal

Signal Image and Video Processing cover
Signal Image and Video Processing
IF:
2.1
Papers:
877
Citations:
4.6K

Organization

U
University of Turku
Scholars:
1.7W
Papers: 1.5W
Citations: 2.0W