HALOC-AxA: An Area/-Energy-Efficient Approximate Adder for Image Processing Application

Fuente: arXiv
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Bibliographic Details
Main Authors: Ziad, Hasnain A., Sakib, Ashiq A.
Format: Preprint
Published: 2025
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author Ziad, Hasnain A.
Sakib, Ashiq A.
author_facet Ziad, Hasnain A.
Sakib, Ashiq A.
contents The design of approximate adders has been widely researched to advance energy-efficient hardware for computation-intensive multimedia applications, such as image, audio, or video processing. The design of approximate adders has been widely researched to advance energy-efficient hardware for computation intensive multimedia applications, such as image/audio/video processing. Several static and dynamic approximate adders exist in the literature, each of which endeavors to balance the conflicting demands of high performance, computational accuracy, and energy efficiency. This work introduces a novel approximate adder that is more energy- and area-efficient than existing adders, while achieving improved or comparable accuracy, as demonstrated by simulation results. The proposed adder's ability to digitally reconstruct high quality images is further demonstrated by the deployment of the design for an image processing task.
format Preprint
id arxiv_https___arxiv_org_abs_2510_20137
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle HALOC-AxA: An Area/-Energy-Efficient Approximate Adder for Image Processing Application
Ziad, Hasnain A.
Sakib, Ashiq A.
Hardware Architecture
The design of approximate adders has been widely researched to advance energy-efficient hardware for computation-intensive multimedia applications, such as image, audio, or video processing. The design of approximate adders has been widely researched to advance energy-efficient hardware for computation intensive multimedia applications, such as image/audio/video processing. Several static and dynamic approximate adders exist in the literature, each of which endeavors to balance the conflicting demands of high performance, computational accuracy, and energy efficiency. This work introduces a novel approximate adder that is more energy- and area-efficient than existing adders, while achieving improved or comparable accuracy, as demonstrated by simulation results. The proposed adder's ability to digitally reconstruct high quality images is further demonstrated by the deployment of the design for an image processing task.
title HALOC-AxA: An Area/-Energy-Efficient Approximate Adder for Image Processing Application
topic Hardware Architecture
url https://arxiv.org/abs/2510.20137