Informations du chercheur

Nom complet

IBNYAICH SAIDA

Grade

PH

Spécialité

Télécommunications

Thématique de recherche

Miniaturisation des Antennes, antennes pour les nouvelles générations (5G), Inteligence artificielle, Métamatériaux, Multiples inputs multiples outputs (MIMO), Radio fréquencyidentification (RFID), Antennes fléxibles , Antennes reconfigurabilité des antennes...

Laboratoire

Laboratoire d’Informatique et de Systèmes Intelligents

Établissement

Faculté des Sciences Semlalia Marrakech

Projets (0 au total)

Aucun projet disponible.

Publications (77 au total)

Compact design of an octagonal star-shaped UWB antenna using Ant Colony Optimization for Continuous Domains (ACO <mml:math xmlns:mml="http://www.w3.org/1998/Math/MathML"> <mml:msub> <mml:mrow/> <mml:mrow> <mml:mi>R</mml:mi> </mml:mrow> </mml:msub> </mml:math> ) for wireless applications

Auteur: Ibtissam Bahlaouane, Abdessalam El Yassini, Abdelfettah Belhabib, Saida Ibnyaich, Abdelouhab Zeroual

Revue: Physica Scripta

Année: 2025

DOI: 10.1088/1402-4896/ae2dd1

A Low-Cost Wideband SIW Antenna with Bilateral Slots on FR4 Epoxy for Ku-Band Applications

Auteur: Dounia Chrij, Asma Khabba, Zakaria El Ouadi, Lahcen Sellak, Jamal Amadid, Omaima Benkhadda, Saïda Ibnyaich, Abdelouhab Zeroual, Ahmed Jamal Abdullah Al-Gburi

Revue: Progress In Electromagnetics Research M

Année: 2025

DOI: 10.2528/PIERM24100401

Hybrid fractal antenna design for UWB applications inspired by Giuseppe Peano and Sierpinski Carpet

Auteur: Sanae Attioui, Asma Khabba, Lahcen Aguni, Saida Ibnyaich, Abdelouhab Zeroual

Revue: Analog Integrated Circuits and Signal Processing

Année: 2025

DOI: 10.1007/s10470-025-02338-8

Design, analysis and implementation of an optimized cost-effective octagonal patch antenna with UWB characteristics for 5G applications and beyond

Auteur: Hind Abbaoui, Salah Eddine EL Aoud, Syed Umaid Ali, Abdelilah Ghammaz, Hassan Belahrach, Saida Ibnyaich

Revue: AEU - International Journal of Electronics and Communications

Année: 2025

DOI: 10.1016/j.aeue.2024.155655

Design of High-Isolation UWB 4 × 4 MIMO Antenna for 5G mmWave Applications Using Artificial Neural Networks

Auteur: Lahcen Sellak, Asma Khabba, Jamal Amadid, Samira Chabaa, Saida Ibnyaich, Abdelouhab Zeroual, Atmane Baddou

Revue: Signals and Communication Technology

Année: 2025

DOI: 10.1007/978-3-031-78802-4_2

ANFIS-Optimized Self-Isolated UWB 2x2 MIMO Circular Patch Antenna Design for High-Speed mmWave Applications at 28 GHz

Auteur: Sellak, Lahcen and Khabba, Asma and Amadid, Jamal and Chabaa, Samira and Ibnyaich, Saida and Baddou, Atmane and Zeroual, Abdelouhab

Revue: Advanced Computation Solutions for Energy Efficiency

Année: 2025

DOI: 0.4018/979-8-3373-1220-0.ch013

RBFNN-Based Ultra-Wideband Super-Miniaturized $$4\times 4$$ Highly-Isolated MIMO Antenna for 5G mm-Wave Wireless Communications

Auteur: Lahcen Sellak, Asma Khabba, Samira Chabaa, Saida Ibnyaich, Abdelouhab Zeroual, Atmane Baddou

Revue: Wireless Personal Communications

Année: 2024

DOI: 10.1007/s11277-024-11548-8

ANN-based design of miniaturized circular dual-band 4×4 MIMO antenna for 28/38 GHz 5G mmWave applications

Auteur: Lahcen Sellak, Asma Khabba, Samira Chabaa, Saida Ibnyaich, Athmane Baddou, Abdelouhab Zeroual, Tole Sutikno

Revue: TELKOMNIKA (Telecommunication Computing Electronics and Control)

Année: 2024

DOI: 10.12928/telkomnika.v22i5.26347

Innovative mm-Wave Compact Dual-Port MIMO Antenna with Inherent Wideband Isolation at 28 GHz for 5G Wireless Networks

Auteur: Asma Khabba, Lahcen Sellak, Jamal Amadid, Zakaria El Ouadi, Saida Ibnyaich, Abdelouhab Zeroual

Revue: Signals and Communication Technology

Année: 2024

DOI: 10.1007/978-3-031-56144-3_4

Communications (107 au total)

ANFIS-based High-Gain Compact Patch Array Antenna for 5G mmWave Applications

Manifestation: 5th Doctoral scientific day: cross-disciplinary innovation for societal change integrating scientific research into the management of intelligent systems

Date: Saturday, June 01, 2024

Organisation: EMSI Marrakesh

ANFIS-based High-Gain Compact Patch Array Antenna for 5G mmWave Applications

Manifestation: 5th Doctoral scientific day: cross-disciplinary innovation for societal change integrating scientific research into the management of intelligent systems

Date: Saturday, June 01, 2024

Organisation: EMSI Marrakesh

Exploring the performance of graphene in THz communication through nanoantenna design, comparing it to copper material

Manifestation: ACMCST'25

Date: Nov 26- 28, 2025

Organisation: Beni Mellal,Morocco

ANFIS-optimized self isolated UWB 2 × 2 MIMO circular patch antenna design for high-speed mmWave applications at 28 GHz

Manifestation: International Conference on Artificial Intelligence in Cybersecurity and Sustainability

Date: May 4-5, 2024

Organisation: EST Essaouira

ANFIS-optimized self isolated UWB 2 × 2 MIMO circular patch antenna design for high-speed mmWave applications at 28 GHz

Manifestation: International Conference on Artificial Intelligence in Cybersecurity and Sustainability

Date: May 4-5, 2024

Organisation: EST Essaouira

Compact UWB 2x2 MIMO Patch Antenna Design Optimized for 5G mmWave Applications at 28 GHz Using Artificial Neural Networks

Manifestation: International Conference on Sustainable Energy, Electrical Engineering and Intelligent Systems (ICS3EIS'24)

Date: May 17th and 18th 2024

Organisation: EST Guelmim

Compact UWB 2x2 MIMO Patch Antenna Design Optimized for 5G mmWave Applications at 28 GHz Using Artificial Neural Networks

Manifestation: International Conference on Sustainable Energy, Electrical Engineering and Intelligent Systems (ICS3EIS'24)

Date: May 17th and 18th 2024

Organisation: EST Guelmim

Optimized Design of a Compact Dual-Band Patch Antenna for High-Speed 5G Connectivity at 28/38 GHz in Next-Generation Smartphones using RBFNN

Manifestation: 6th International Symposium on Advanced Electrical and Communication Technologies (ISAECT),

Date: December 3-5, 2024

Organisation: Alkhobar, Saudi Arabia

Optimized Design of a Compact Dual-Band Patch Antenna for High-Speed 5G Connectivity at 28/38 GHz in Next-Generation Smartphones using RBFNN

Manifestation: 6th International Symposium on Advanced Electrical and Communication Technologies (ISAECT),

Date: December 3-5, 2024

Organisation: Alkhobar, Saudi Arabia