Sara Ghayouraneh
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Researcher
Faculty Researcher
Research Areas
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Biography and Research Information
OverviewAI-generated summary
Sara Ghayouraneh's research focuses on the design and analysis of microwave antennas, particularly choke horn and choke ring waveguide antennas. Her work involves modeling these antennas and developing machine learning algorithms for their characterization and optimization. Recent publications include studies on the radiation pattern optimization of double-choke and choke antennas, as well as the analysis and design of choke ring circular waveguide antennas using the geometrical theory of diffraction.
Ghayouraneh also investigates microwave heating systems, including a temperature-controlled microwave heating system and a temperature-controlled disinfection system that utilizes both microwave and plasma technologies. Her research in this area has explored the impact of specific factors, such as sodium chloride concentration, on microbial inactivation within microwave disinfection processes.
She has received funding from the National Science Foundation (NSF) for two awards totaling $99,990, serving as Co-PI on projects related to USA-Africa workshops on communication systems and microwave technologies. Ghayouraneh leads a research group and collaborates with several faculty members at the University of Arkansas at Fayetteville, with whom she shares multiple publications.
Metrics
- h-index: 5
- Publications: 12
- Citations: 49
Selected Publications
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The 2025 IEEE International Microwave and Antenna Symposium in Nairobi, Kenya [Conference Report] (2026)
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Enhancing Microwave Disinfection: Impact of Sodium Chloride on Microbial Inactivation (2024)
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Modeling, Characterization, and Machine Learning Algorithm for Rectangular Choke Horn Antennas (2024)
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Temperature-Controlled Disinfection System Using Microwave and Plasma (2023)
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Double-Choke Antenna Radiation Optimization (2023)
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Optimization of Choke Antenna Aperture Radiation Pattern (2023)
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Temperature-Controlled Microwave Heating System (2023)
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Choke Ring Circular Waveguide Antenna Analysis and Design Using Geometrical Theory of Diffraction (2022)
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Dynamic Addressing for Urban Air Mobility Vehicles (2020)
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Practical Considerations in Traffic Flow Systems for ODM Vehicles (2019)
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Investigation of Traffic Flow for ODM Vehicles in Dynamic ICAO Addressing Process (2019)
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Dynamic Addressing for On-Demand Mobility (2018)
Federal Grants 2 $99,990 total
Travel: USA-AFRICA WORKSHOP ON COMMUNICATION SYSTEMS AND MICROWAVE TECHNOLOGIES
Conference: USA-Africa Workshop on Communications and Microwave Emerging Technologies
Collaboration Network
Top Collaborators
- Modeling, Characterization, and Machine Learning Algorithm for Rectangular Choke Horn Antennas
- Choke Ring Circular Waveguide Antenna Analysis and Design Using Geometrical Theory of Diffraction
- Temperature-Controlled Microwave Heating System
- Optimization of Choke Antenna Aperture Radiation Pattern
- Temperature-Controlled Disinfection System Using Microwave and Plasma
Showing 5 of 7 shared publications
- Modeling, Characterization, and Machine Learning Algorithm for Rectangular Choke Horn Antennas
- Choke Ring Circular Waveguide Antenna Analysis and Design Using Geometrical Theory of Diffraction
- Temperature-Controlled Microwave Heating System
- Optimization of Choke Antenna Aperture Radiation Pattern
- Temperature-Controlled Disinfection System Using Microwave and Plasma
Showing 5 of 7 shared publications
- Modeling, Characterization, and Machine Learning Algorithm for Rectangular Choke Horn Antennas
- Choke Ring Circular Waveguide Antenna Analysis and Design Using Geometrical Theory of Diffraction
- Temperature-Controlled Microwave Heating System
- Optimization of Choke Antenna Aperture Radiation Pattern
- Temperature-Controlled Disinfection System Using Microwave and Plasma
Showing 5 of 7 shared publications
- Modeling, Characterization, and Machine Learning Algorithm for Rectangular Choke Horn Antennas
- Choke Ring Circular Waveguide Antenna Analysis and Design Using Geometrical Theory of Diffraction
- Temperature-Controlled Microwave Heating System
- Optimization of Choke Antenna Aperture Radiation Pattern
- Temperature-Controlled Disinfection System Using Microwave and Plasma
Showing 5 of 7 shared publications
- Temperature-Controlled Disinfection System Using Microwave and Plasma
- Enhancing Microwave Disinfection: Impact of Sodium Chloride on Microbial Inactivation
- Temperature-Controlled Disinfection System Using Microwave and Plasma
- Enhancing Microwave Disinfection: Impact of Sodium Chloride on Microbial Inactivation
- The 2025 IEEE International Microwave and Antenna Symposium in Nairobi, Kenya [Conference Report]
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