Approximate arithmetic circuits: A survey, characterization, and recent applications

H Jiang, FJH Santiago, H Mo, L Liu… - Proceedings of the …, 2020 - ieeexplore.ieee.org
Approximate computing has emerged as a new paradigm for high-performance and energy-
efficient design of circuits and systems. For the many approximate arithmetic circuits …

Approximate computing survey, Part I: terminology and software & hardware approximation techniques

V Leon, MA Hanif, G Armeniakos, X Jiao… - arXiv preprint arXiv …, 2023 - arxiv.org
The rapid growth of demanding applications in domains applying multimedia processing
and machine learning has marked a new era for edge and cloud computing. These …

Block-based carry speculative approximate adder for energy-efficient applications

F Ebrahimi-Azandaryani, O Akbari… - … on Circuits and …, 2019 - ieeexplore.ieee.org
In this brief, a low energy consumption block-based carry speculative approximate adder is
proposed. Its structure is based on partitioning the adder into some non-overlapped …

Design and analysis of an approximate adder with hybrid error reduction

H Seo, YS Yang, Y Kim - Electronics, 2020 - mdpi.com
This paper presents an energy-efficient approximate adder with a novel hybrid error
reduction scheme to significantly improve the computation accuracy at the cost of extremely …

[HTML][HTML] A novel approach for design energy efficient inexact reverse carry select adders for IoT applications

R Turaka, SR Chand, R Anitha, RA Prasath… - Results in …, 2023 - Elsevier
Low cost, low form factor and highly energy efficient VLSI design is the key for the success of
internet of things (IoT) paradigm. Approximate computing is one of the major techniques …

A novel approximate adder design using error reduced carry prediction and constant truncation

J Lee, H Seo, H Seok, Y Kim - IEEE Access, 2021 - ieeexplore.ieee.org
This paper proposes a novel approximate adder that exploits an error-reduced carry
prediction and constant truncation with error reduction schemes. The proposed adder …

Energy-efficient approximate full adders for error-tolerant applications

F Ahmadi, MR Semati, H Daryanavard… - Computers and Electrical …, 2023 - Elsevier
Low-power consumption is of utmost importance in modern digital systems-on-chip.
Approximate computing is a technique used in error-tolerant applications such as …

Design and Implementation of Low Power and Area Efficient Architecture for High Performance ALU

U Penchalaiah, VGS Kumar - Parallel Processing Letters, 2022 - World Scientific
Digital Signal Processors (DSP) have a ubiquitous presence in almost all civil and military
signal processing applications, including mission critical environments like nuclear reactors …

Approximate Computing: Concepts, Architectures, Challenges, Applications, and Future Directions

AM Dalloo, AJ Humaidi, AK Al Mhdawi… - IEEE …, 2024 - ieeexplore.ieee.org
The unprecedented progress in computational technologies led to a substantial proliferation
of artificial intelligence applications, notably in the era of big data and IoT devices. In the …

A High-Accuracy Low-Power Approximate Multipliers with New Error Compensation Technique for DSP Applications

A Minaeifar, E Abiri, K Hassanli, A Darabi - Circuits, Systems, and Signal …, 2024 - Springer
The article presents two multipliers equipped with error compensation techniques, utilizing
approximate 4: 2 compressors to minimize energy consumption. Compared to previous …