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January 6, 2026Journal of Electrical and Computer Engineering0 citationsOpen Access

Energy‐Efficient Approximate Full Adders Applying Memristive Serial IMPLY Logic for Image Processing

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SFSeyed Erfan FatemiehMRMohammad Reza Reshadinezhad

Key Points

  • This research addresses energy and memory challenges in processors by implementing memristive approximate full adders.
  • Proposed four memristive approximate full adders using the Material Implication (IMPLY) method.
  • Evaluated circuits in three image processing applications under varying scenarios.
  • Assessed computational accuracy with multiple error evaluation criteria in an 8-bit structure.
  • The proposed circuits reduce computational steps by up to 40%.
  • Energy consumption improves 49%-75% compared to exact adders and up to 41% over other approximate full adders.
  • Output images maintain acceptable quality metrics across all evaluated scenarios.

Abstract

Researchers and designers are facing problems with memory and power walls, considering the pervasiveness of Von Neumann architecture in the design of processors and the problems caused by reducing the dimensions of deep submicron transistors. Memristive Approximate Computing (AC) and In‐MemoryProcessing (IMP) can be promising solutions to these problems. We have tried to solve the power and memory wall problems by presenting the implementation algorithm of four memristive approximate full adders applying the Material Implication (IMPLY) method. The proposed circuits reduce the number of computational steps by up to 40% compared to the state of the art. The energy consumption of the proposed circuits improves over the previous exact ones by 49%–75% and over the approximate full adders by up to 41%. Multiple error evaluation criteria evaluate the computational accuracy of the proposed approximate full adders in three scenarios in the 8‐bit approximate adder structure. The proposed approximate full adders are evaluated in three image processing applications in three scenarios. The results of application‐level simulation indicate that the four proposed circuits can be applied in all three scenarios, considering the acceptable image quality metrics of the output images.

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Cite This Study

Fatemieh et al. (2026) studied this question.

synapsesocial.com/papers/695d85413483e917927a4390https://doi.org/10.1155/jece/7627964
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