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Related Experiment Video

Updated: Jul 8, 2026

SwarmSight: Real-time Tracking of Insect Antenna Movements and Proboscis Extension Reflex Using a Common Preparation and Conventional Hardware
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Bird swarm optimized chaotic lattice framework for parallel multi image encryption.

Devisha Arunadevi Tiwari1, Bhaskar Mondal2, Arpana Sinhal3

  • 1JK Lakshmipat University, Jaipur, Rajasthan, India. devishaarunadevitiwari@gmail.com.

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|July 6, 2026
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Summary

We developed BLINK, a novel image encryption framework using chaotic lattice dynamics and optimization for secure, efficient multi-image transmission. It offers enhanced security and adaptability for modern multimedia communication needs.

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Area of Science:

  • Cryptography and Information Security
  • Applied Mathematics and Computational Science

Background:

  • Multimedia communication growth necessitates secure, scalable image encryption.
  • Existing methods face challenges in efficiency, adaptability, and multi-image handling.

Purpose of the Study:

  • Introduce BLINK (Bird Swarm Optimization-Hypertuned Lattice-Based Image eNcryption Kernel), an entropy-preserving multi-image encryption framework.
  • Integrate chaotic lattice dynamics, eigen-coupled channel interaction, and optimization for enhanced security and efficiency.

Main Methods:

  • Utilize a PSI-based amortized eigen-coupled chaotic lattice mechanism for invariant structure reuse.
  • Employ Bird Swarm Optimization (BSO) for adaptive hyperparameter tuning and secure seed generation.
  • Incorporate lattice-based constructs inspired by learning with errors for post-quantum security.

Main Results:

  • Demonstrate superior entropy preservation compared to existing schemes.
  • Achieve significant reduction in pixel correlation across multiple images.
  • Exhibit enhanced resistance against statistical and differential cryptanalysis.

Conclusions:

  • BLINK provides a secure, efficient, and adaptable solution for multi-image encrypted transmission.
  • The framework's design aligns with post-quantum security principles.
  • Experimental results validate BLINK's superiority for high-dimensional correlated data encryption.