Research & Scientific Work

From Mathematical Foundations toSecure Digital Systems.

My research spans applied cryptography, chaotic dynamical systems, pseudo-random generation, data privacy, multimedia encryption, and post-quantum cryptography, with a growing focus on translating cryptographic research into secure and resilient digital systems.

01Mathematics
02Cryptography
03Security
04Post-Quantum

Research Direction

Research that connects theory with security engineering.

My research trajectory began with mathematical and computational approaches to security, including authentication, mobile-network trust, chaotic systems, pseudo-random generation, and multimedia encryption.

It progressively expanded toward data privacy, secure communications, Internet of Things security, and post-quantum cryptography—connecting mathematical foundations with contemporary security challenges.

Research Areas

Core scientific domains.

Research interests developed across applied mathematics, cryptography, information security, privacy, and secure communications.

01Research Area

Post-Quantum Cryptography

Quantum-resistant cryptography, hybrid approaches, secure communications, and IoT security.

  • PQC
  • Hybrid Cryptography
  • IoT Security
02Research Area

Applied Cryptography

Symmetric, asymmetric, hybrid, and practical cryptographic mechanisms for authentication, integrity, confidentiality, and secure communications.

  • Encryption
  • Authentication
  • Secure Communications
03Research Area

Chaotic Systems & Randomness

Chaotic dynamical systems and their application to pseudo-random number and bit generation.

  • Dynamical Systems
  • PRNG
  • Chaos
04Research Area

Multimedia Security

Mathematical and cryptographic approaches to image and voice encryption.

  • Image Encryption
  • Voice Encryption
  • MATLAB
05Research Area

Data Privacy

Privacy–utility trade-offs, protection of sensitive information, and secure data analysis.

  • Privacy
  • Data Utility
  • Secure Analysis

Scientific Publications

Selected research publications.

Scientific work across cryptography, privacy, pseudo-random generation, and network security.

2025
Cryptography

Image Encryption Scheme Based on New Model of Gingerbreadman Map

Advances in Intelligent Systems and Digital Applications, Springer Nature, pp. 400–409

First Author
DOI ↗
2022
Data Privacy

Modelling the Relationship between Privacy and Loss of Data Utility When Analysing the Data

Journal of Theoretical and Applied Information Technology, Vol. 100, No. 22

First Author
Publication ↗
2020
Pseudo-Random Generation

A Pseudo-Random Number Generator Using Double Pendulum

Applied Mathematics & Information Sciences, Vol. 14, No. 6, pp. 977–984

First Author
DOI ↗
2019
Network Security

A Pseudo Random Bit Generator Based on a Modified Chaotic Map

International Journal of Network Security, Vol. 21, No. 3, pp. 402–408

First Author
DOI ↗

Additional Publication

2025
Educational AI

Integrating AI into Instructional Materials Development: Moroccan High School EFL Teachers’ Perceptions, Practices, Challenges, and Support Needs

International Journal of Linguistics and Translation Studies, Vol. 6, No. 4

Co-author
DOI ↗

Scientific Communications

Research presented across scientific conferences.

Conference communications reflecting the evolution from mobile-network security and chaos-based encryption to post-quantum cryptography.

2025

Towards a Post-Quantum Cryptography for the Internet of Things

1st International Conference on Mathematics and Applications (ICMA-2025)

Casablanca · First Author
2025

Image Encryption Scheme Based on New Model of Gingerbreadman Map

International Conference on Intelligent Systems and Digital Applications (ISDA’25), FST Settat

Settat · Speaker · First Author
2018

A New Method for Voice Encryption Based on Chaotic System

International Conference MOCASIM2018

Marrakech · Speaker · First Author
2013

La sécurité du GSM

Journées scientifiques « La sécurité des systèmes informatiques »

Agadir · Speaker

Research Implementations

From scientific models to working prototypes.

Academic implementations developed using MATLAB, Python, C, and Java across cryptography, privacy, and secure communications.

2023–2025

Chaotic Image Encryption

Development of an image-encryption scheme based on a new Gingerbreadman Map model.

MATLAB
2022

Privacy–Utility Modeling

Implementation of a model for analysing the trade-off between privacy and loss of data utility.

Python
2020

Double-Pendulum PRNG

Implementation of a pseudo-random number generator using a double-pendulum dynamical system.

C
2019

Chaotic Pseudo-Random Bit Generator

Implementation of a pseudo-random bit generator based on a modified chaotic map.

C
2018

Voice Encryption

Application implementing a voice-encryption method based on a chaotic system.

MATLAB
2013

GSM Trust Model

Master’s project proposing a trust method for GSM networks.

Java
2010

Message Authentication Code

Undergraduate project focused on message authentication codes (MAC).

Java

Research Journey

A continuous path from mathematics to digital trust.

01Mathematics
02Dynamical Systems
03Cryptography
04Privacy & Secure Communications
05Post-Quantum Cryptography
06Secure & Resilient Digital Systems
Research → Engineering

My research direction continues to evolve toward practical security challenges created by increasingly connected systems and the transition toward quantum-resistant cryptography.

Research & Collaboration

Research, collaboration and knowledge exchange.

Interested in cryptography, post-quantum security, or research collaboration?