Abdelrahman Elfikky
This is a likely match — the affiliation was inferred from OpenAlex, ORCID, and web sources but has not been fully confirmed. Treat with appropriate caution.
Researcher
Also affiliated: University of California, Santa Cruz (2023–2025); Arab Academy for Science, Technology, and Maritime Transport (2024–2025); Arab Academy for Science, Technology, and Maritime Transport (2023–2025)
Faculty Researcher
Research Areas
Biomedical Subjects
Links
Biography and Research Information
OverviewAI-generated summary
Abdelrahman Elfikky's research focuses on optical wireless communication systems, particularly free-space optical (FSO) links and underwater visible light communication. His work investigates methods to enhance the performance and reliability of these systems under various atmospheric and environmental conditions. Recent publications explore coding techniques for diversity enhancement in FSO systems, performance modeling for UAV-based FSO relay systems facing pointing errors and turbulence, and the analysis of convolutional codes in dynamic underwater visible light communication networks. Elfikky also studies deep learning applications in wireless communication, including a survey on deep learning-based NOMA, and the use of neural networks and autoencoders for symbol detection and channel estimation in space optical communications. He has authored 22 publications with 445 citations and an h-index of 9, and collaborates with researchers from the University of Arkansas for Medical Sciences and the University of Arkansas at Little Rock.
Metrics
- h-index: 9
- Publications: 22
- Citations: 474
Selected Publications
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A Multi-Class Autoencoder Framework for Wiretap Code Design (2026)
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ColiFormer: A Transformer-Based Codon Optimization Model Balancing Multiple Objectives for Enhanced E. coli Gene Expression (2026)
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Reinforcement Learning with Attention for Dynamic Spectrum Access in Optical Networks (2025)
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Impact of Dynamic Channel Coding Performance in Indoor Visible Light Communication (2025)
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ColiFormer: A Transformer-Based Codon Optimization Model Balancing Multiple Objectives for Enhanced <i>E. coli</i> Gene Expression (2025)
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Integrating UAV-Mounted Diffraction Spectroscopy and FBG Sensor Networks for Real-Time Forest Health Monitoring (2025)
Collaboration Network
Top Collaborators
- Integrating UAV-Mounted Diffraction Spectroscopy and FBG Sensor Networks for Real-Time Forest Health Monitoring
- Impact of Dynamic Channel Coding Performance in Indoor Visible Light Communication
- ColiFormer: A Transformer-Based Codon Optimization Model Balancing Multiple Objectives for Enhanced <i>E. coli</i> Gene Expression
- ColiFormer: A Transformer-Based Codon Optimization Model Balancing Multiple Objectives for Enhanced E. coli Gene Expression
- ColiFormer: A Transformer-Based Codon Optimization Model Balancing Multiple Objectives for Enhanced <i>E. coli</i> Gene Expression
- ColiFormer: A Transformer-Based Codon Optimization Model Balancing Multiple Objectives for Enhanced E. coli Gene Expression
- Integrating UAV-Mounted Diffraction Spectroscopy and FBG Sensor Networks for Real-Time Forest Health Monitoring
- Integrating UAV-Mounted Diffraction Spectroscopy and FBG Sensor Networks for Real-Time Forest Health Monitoring
- Integrating UAV-Mounted Diffraction Spectroscopy and FBG Sensor Networks for Real-Time Forest Health Monitoring
- ColiFormer: A Transformer-Based Codon Optimization Model Balancing Multiple Objectives for Enhanced <i>E. coli</i> Gene Expression
- ColiFormer: A Transformer-Based Codon Optimization Model Balancing Multiple Objectives for Enhanced <i>E. coli</i> Gene Expression
- ColiFormer: A Transformer-Based Codon Optimization Model Balancing Multiple Objectives for Enhanced <i>E. coli</i> Gene Expression
- ColiFormer: A Transformer-Based Codon Optimization Model Balancing Multiple Objectives for Enhanced <i>E. coli</i> Gene Expression
- Impact of Dynamic Channel Coding Performance in Indoor Visible Light Communication
- Impact of Dynamic Channel Coding Performance in Indoor Visible Light Communication
- ColiFormer: A Transformer-Based Codon Optimization Model Balancing Multiple Objectives for Enhanced E. coli Gene Expression
- ColiFormer: A Transformer-Based Codon Optimization Model Balancing Multiple Objectives for Enhanced E. coli Gene Expression
- ColiFormer: A Transformer-Based Codon Optimization Model Balancing Multiple Objectives for Enhanced E. coli Gene Expression
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