Ali Broumandnia | Cybersecurity | Innovative Research Award

Innovative Research Award

Ali Broumandnia
Islamic Azad University, Iran

Ali Broumandnia
Affiliation Islamic Azad University
Country Iran
Scopus ID 23003455800
Documents 61
Citations 615
h-index 12
Subject Area Cybersecurity
Event Technology Scientists Awards
ORCID 0000-0001-5145-2013

Ali Broumandnia is a researcher affiliated with Islamic Azad University whose scholarly work addresses cybersecurity through digital image encryption, chaotic maps, modular arithmetic, and secure multimedia processing. His publications examine scale-invariant encryption approaches designed to address image-size constraints while strengthening cryptographic properties, providing a focused contribution to contemporary information-security research. [1] [2]

Abstract

Ali Broumandnia’s research is situated within cybersecurity, with particular emphasis on digital image encryption using chaotic and modular mathematical techniques. His scholarly work addresses limitations associated with image-size dependency and conventional cryptographic approaches by investigating scale-invariant encryption frameworks. Research involving three-dimensional modular chaotic maps explores permutation, substitution, diffusion, key-space characteristics, and statistical security measures for digital imagery. Related work extends these concepts to color images and prime-modular constructions, demonstrating a consistent research direction toward adaptable and computationally considered image-security mechanisms. The publication record supplied for this recognition profile indicates sustained engagement with encryption research and its applications to secure digital multimedia communication. [1] [2] [3]

Keywords

  • Cybersecurity
  • Digital Image Encryption
  • Chaotic Maps
  • Modular Arithmetic
  • Scale-Invariant Encryption
  • Cryptography
  • Secure Multimedia

Introduction

Digital images require protection against unauthorized access, manipulation, and disclosure as multimedia communication expands across networked environments. Broumandnia’s research approaches this challenge through cryptographic methods based on chaotic maps and modular operations. His studies investigate scale-invariant image encryption, seeking approaches applicable across differing image dimensions while maintaining measurable security characteristics and computational practicality. [1] [2]

Research Profile

Broumandnia’s documented research profile centers on cybersecurity and image cryptography, particularly the application of three-dimensional modular chaotic maps to digital image protection. His work encompasses grayscale and color-image encryption, scale-invariant processing, permutation and diffusion mechanisms, and prime-modular techniques. These themes demonstrate a coherent specialization connecting mathematical transformations with practical multimedia security requirements. [1] [2] [3]

Research Contributions

The research contributions represented by these publications include development and evaluation of scale-invariant encryption strategies using three-dimensional modular chaotic maps. The studies consider permutation, substitution, diffusion, key-space expansion, statistical properties, and image-size flexibility. Color-image encryption extends the methodology to multidimensional visual data, while prime-modular techniques further explore cryptographic robustness and implementation characteristics. [1] [2] [3]

Publications

Selected publications associated with Broumandnia’s research include studies on scale-invariant digital color image encryption, scale-invariant digital image encryption using three-dimensional modular chaotic maps, and digital image encryption using chaotic maps with prime modular constructions. Collectively, these works reflect a continuing investigation of cryptographic architectures intended to improve flexibility, security parameters, and image-processing performance. [1] [2] [3]

Research Impact

The supplied academic metrics list 61 documents, 615 citations, and an h-index of 12, indicating a documented body of scholarly output and citation activity. Within the cited research, scale-invariant encryption addresses practical image-dimension considerations, while color-image and prime-modular studies broaden the technical scope of secure multimedia processing. [1] [2] [3]

Award Suitability

The documented research aligns with an Innovative Research Award through its sustained focus on image-security methodologies involving chaotic maps, modular arithmetic, scale invariance, and multidimensional processing. The supplied publication evidence demonstrates technically focused work addressing established challenges in digital image encryption, while the reported scholarly metrics provide additional context for evaluating the researcher’s academic profile and research activity. [1] [2] [3]

Conclusion

Ali Broumandnia’s documented scholarship presents a focused research direction in cybersecurity and digital image encryption. His publications investigate three-dimensional chaotic-map architectures, scale-invariant processing, color-image protection, and prime-modular techniques. Together with the supplied publication metrics, these works provide a structured basis for recognizing a research profile centered on cryptographic approaches for secure digital multimedia. [1] [2] [3]

References

  1. Momeni Asl, A., Broumandnia, A., & Mirabedini, S. J. (2021). Scale invariant digital color image encryption using a 3D modular chaotic map. IEEE Access, 9, 102433–102449.
    https://ieeexplore.ieee.org/document/9481114
  2. Broumandnia, A. (2020). Scale invariant digital image encryption using 3D modular chaotic map. Multimedia Tools and Applications, 79, 11327–11355.
    https://link.springer.com/article/10.1007/s11042-019-08337-y
  3. Ghazanfaripour, H., & Broumandnia, A. (2020). Designing a digital image encryption scheme using chaotic maps with prime modular. Optics and Laser Technology, 131, 106339.
    https://www.scopus.com/pages/publications/85086361488

Thomas Monoth | Information Security | Innovative Research Award

Innovative Research Award

Thomas Monoth
Mary Matha Arts and Science College, India

                  Thomas Monoth
Affiliation Mary Matha Arts and Science College
Country India
Google Scholar OezvzswAAAAJ
Documents 27
Citations 240
h-index 9
Subject Area Information Security
Event Technology Scientists Awards

Thomas Monoth is an academic researcher affiliated with Mary Matha Arts and Science College, India, whose documented research activity includes work in information security and visual cryptography. His publication record includes studies addressing secure fingerprint transmission, recursive visual cryptography, and contrast-enhanced visual cryptographic schemes, reflecting an interest in privacy-preserving information representation and secure image-based communication. [1] [2] [3]

Abstract

Thomas Monoth is an academic researcher associated with Mary Matha Arts and Science College, India, with research interests centered on information security and visual cryptography. His documented publications address tamper-resistant fingerprint transmission, recursive visual cryptography, random basis column pixel expansion, and contrast-enhanced visual cryptographic schemes. These studies examine methods for protecting sensitive visual information while supporting secure representation and transmission. His reported research record comprises 27 documents, 240 citations, and an h-index of 9. Collectively, the available publications demonstrate sustained engagement with cryptographic approaches for image security and privacy. [1] [2] [3]

Keywords

Information Security; Visual Cryptography; Image Security; Fingerprint Protection; Recursive Visual Cryptography; Pixel Expansion; Privacy-Preserving Systems; Cryptographic Schemes; Secure Transmission; Digital Security. [1] [2] [3]

Introduction

Visual cryptography provides techniques for protecting visual information by transforming secret images into share-based representations. Within information security, such methods can support privacy protection for sensitive biometric and image data. Monoth’s documented research addresses these themes through fingerprint transmission and visual cryptographic approaches designed for secure visual information handling. [1] [2]

Research Profile

Thomas Monoth’s documented research profile is associated with information security, particularly visual cryptography and secure image processing. His publication topics include fingerprint protection, recursive visual cryptography, pixel expansion, and contrast enhancement. These themes indicate a research focus on cryptographic techniques for representing, protecting, and transmitting sensitive visual information securely. [1] [2] [3]

Research Contributions

The documented contributions cover several aspects of visual cryptography, including tamperproof fingerprint transmission, recursive scheme construction, random basis column pixel expansion, and additional pixel patterns for contrast enhancement. Together, these studies address practical and technical considerations in securing visual information and improving the representation characteristics of cryptographic image schemes. [1] [2] [3]

Publications

The available publication record includes research on tamperproof fingerprint transmission using visual cryptography schemes, recursive visual cryptography using random basis column pixel expansion, and contrast-enhanced visual cryptography schemes based on additional pixel patterns. These publications collectively demonstrate continued investigation of cryptographic methods for protecting and representing visual information in security-oriented applications. [1] [2] [3]

Research Impact

The supplied research record reports 27 documents, 240 citations, and an h-index of 9, providing bibliometric indicators of scholarly dissemination. The cited publications address security challenges involving fingerprints and visual information, areas relevant to privacy-conscious digital systems. Their focus on visual cryptography contributes documented technical perspectives to information security research. [1] [2] [3]

Award Suitability

The documented alignment between Thomas Monoth’s research and information security is supported by publications addressing visual cryptography, fingerprint protection, and secure image representation. His reported publication and citation indicators further provide measurable evidence of scholarly activity. These factors provide relevant documentation for consideration under an Innovative Research Award focused on technology and security research. [1] [2] [3]

Conclusion

Thomas Monoth’s documented scholarly work centers on visual cryptography and information security, with publications addressing secure fingerprint transmission, recursive cryptographic schemes, pixel expansion, and contrast enhancement. The available record combines these research themes with reported bibliometric activity, establishing a documented academic profile relevant to research recognition in technology and security domains. [1] [2] [3]

References

  1. Tamperproof transmission of fingerprints using visual cryptography schemes. (2010). Procedia Computer Science. ScienceDirect.
    https://www.sciencedirect.com/science/article/pii/S1877050910003480
  2. Recursive visual cryptography using random basis column pixel expansion. (2007). IEEE.
    https://ieeexplore.ieee.org/abstract/document/4418265
  3. Contrast-enhanced visual cryptography schemes based on additional pixel patterns. (2010). IEEE.
    https://ieeexplore.ieee.org/abstract/document/5656468