Ms. Faranak Khosravi | Optical Network | Best Researcher Award

Ms. Faranak Khosravi | Optical Network | Best Researcher Award

Ms. Faranak Khosravi, University of Texas at San Antonio, United States

Ms. Faranak Khosravi is a visionary Doctor of Philosophy student in Electrical Engineering at the University of Texas at San Antonio, set to graduate in May 2024. πŸŽ“ Her groundbreaking research centers around crafting an innovative structure for Reconfigurable Optical Add-Drop Multiplexers (ROADM) tailored for elastic optical networks (EON). 🌐 Proficient in Software-Defined Networking (SDN) and Linux, she employs her expertise to elevate network functionalities. πŸ’» Ms. Khosravi explores the multidisciplinary realm of Machine Learning to predict EON traffic, exemplifying a holistic approach to contemporary communication challenges. πŸ€– With a Master’s in Communications and Network Engineering from the University Putra Malaysia (UPM), she significantly contributed to enhancing Three-Level Code Division Multiplexing in Optical Fiber Communication Systems. πŸŒπŸ” Her dynamic professional journey includes roles as a Research and Teacher Assistant, Low Voltage and Security Designer Intern at HDR, Inc., and a Lecturer in Iran, showcasing her commitment to education and practical applications of engineering solutions. πŸ§‘β€πŸ«βš™οΈ Possessing a diverse skill set from Python to Cisco, Ms. Khosravi is adept at scientific applications and office tools, making her a versatile problem solver in both technical and administrative domains. πŸ’‘βœ¨ Her research passions lie in Optical Network and Network Optimization, emphasizing her dedication to shaping the future of cutting-edge network technologies. πŸš€πŸ”§

πŸŽ“Β Education :

Ms. Faranak Khosravi is a forward-thinking Doctor of Philosophy student in Electrical Engineering at the University of Texas at San Antonio, with an expected graduation in May 2024. πŸŽ“ Her research focuses on designing a novel structure for Reconfigurable Optical Add-Drop Multiplexers (ROADM) tailored for application in elastic optical networks (EON). 🌐 Proficient in Software-Defined Networking (SDN) and Linux, she leverages her expertise to enhance network functionalities. πŸ–₯️ Additionally, Ms. Khosravi explores the application of Machine Learning to predict network traffic within the EON, showcasing a multidisciplinary approach to addressing modern communication challenges. πŸ€– Her earlier academic achievement includes a Master of Science in Communications and Network Engineering System from the University Putra Malaysia (UPM), where she contributed to the improvement of Three-Level Code Division Multiplexing in Optical Fiber Communication Systems. πŸŒπŸ”¬ Ms. Khosravi’s academic journey reflects her commitment to advancing communication technologies through innovative research and interdisciplinary collaboration.

🌐 Professional Profiles :

Scopus

πŸ‘¨β€πŸ« Work Experience :

Ms. Faranak Khosravi brings a wealth of experience and expertise to her roles, showcasing a dynamic professional journey. 🌐 Currently serving as a Research and Teacher Assistant at the University of Texas at San Antonio since January 2021, she not only imparts knowledge through courses like Math in Signal and Network Theory but also actively contributes to research in Optical Network and Software-Defined Network (SDN). πŸŽ“ Her internship at HDR, Inc. as a Low Voltage and Security Designer Intern from May to August 2023 further enriched her skill set, where she developed design narratives, specifications, and drawings using Revit, alongside providing crucial construction administration services. πŸ’» Ms. Khosravi’s extensive teaching background as a Lecturer at Kharazmi College of Shahreza in Iran and Sepahan Institute of Higher Education underscores her dedication to education. πŸ“š From teaching electrical circuits and C++ programming language to supervising undergraduate final projects, she has made a significant impact on her students’ academic journeys. πŸ§‘β€πŸ« Her earlier experience as an Electrical Engineer at Mehrtash Company in Iran showcased her prowess in network design and management, emphasizing LAN network installation, UPS backup solutions, and the implementation of SNMP protocol for monitoring systems. βš™οΈ Ms. Khosravi’s multifaceted career reflects her commitment to education, research, and practical application of engineering solutions.

πŸ’» Skills :

Ms. Faranak Khosravi boasts a diverse skill set, combining technical prowess with proficiency in scientific applications and office tools. πŸš€ Her technical acumen spans Python, MATLAB, Linux, C++ programming, and expertise in scientific software such as OptiSystem. πŸπŸ’» Additionally, she navigates seamlessly through Cisco, Solar Winds, Zabbix, and demonstrates familiarity with Machine Learning, showcasing a holistic understanding of networking technologies. 🌐 Ms. Khosravi’s proficiency extends to office applications, including Microsoft PowerPoint, Excel, Word, and Visio, along with Bluebeam for effective documentation and visualization. πŸ“ŠπŸ“ Her comprehensive skill repertoire underscores her versatility and readiness to tackle challenges in both technical and administrative domains. πŸ‘©β€πŸ’»βœ¨

🧠Research Interests πŸ”¬πŸŒ :

Ms. Faranak Khosravi’s research passions converge at the intersection of Optical Network and Network Optimization, where she delves into the intricacies of enhancing communication infrastructures. πŸŒπŸ” Her keen interest in these fields reflects a commitment to advancing the efficiency and performance of networks, shaping the future landscape of optical communication with a focus on optimization strategies. πŸš€πŸ’‘ Ms. Khosravi’s endeavors underscore her dedication to pioneering solutions that contribute to the evolution of cutting-edge network technologies. πŸ‘©β€πŸ’»πŸ”§

Publications Top NotesΒ  :

1.Β  Implementation of an Elastic Reconfigurable Optical Add/Drop Multiplexer based on Subcarriers for Application in Optical Multichannel Networks

Published: 2022 International Conference on Electronics, Information, and Communication, ICEIC 2022

Cited by 9 articles

Conference Paper on the implementation of an Elastic ROADM for Optical Multichannel Networks.

2.Β  Improvement of Three-Level Code Division Multiplexing via Dispersion Mapping

Published: Telecommunication Systems, 2016, 61(4), pp. 887–895

Cited by 2 articles

Open access article focusing on enhancing the performance of three-level code division multiplexing through dispersion mapping.

3.Β  Development of Three-Level Code Division Multiplexing over Wavelength Division Multiplexing

Published: Proceedings of ICP 2014 – 5th International Conference on Photonics 2014, 2015, pp. 217–219, 7002360

Conference paper discussing the development of three-level code division multiplexing over wavelength division multiplexing.

4.Β  Improving the Performance of Three-Level Code Division Multiplexing using the Optimization of Signal Level Spacing

Published: Optik, 2014, 125(18), pp. 5037–5040

Cited by 14 articles

Open access article focusing on optimizing signal level spacing for enhanced performance of three-level code division multiplexing.

5.Β  Investigation of Three-Level Code Division Multiplexing Performance over High-Speed Optical Fiber Communication System

Published: 4th International Conference on Photonics, ICP 2013 – Conference Proceeding, 2013, pp. 132–134, 6687091

Cited by 4 articles

Conference paper investigating the performance of three-level code division multiplexing over high-speed optical fiber communication systems.

 

 

 

 

Mr. Alessandro Ottino | Cloud Networking

Mr. Alessandro Ottino : Leading Researcher in Cloud Networking

Mr. Alessandro Ottino, University College London, United Kingdom

πŸŽ“ Mr. Alessandro Ottino, Currently pursuing a Microsoft-funded Ph.D. at University College London (UCL) in optical systems and technologies for distributed deep learning. Focused on developing innovative optical topologies and technologies to enable effective training of large-scale deep neural networks with over 1 trillion parameters across thousands of accelerators in data centers.

πŸ’Ό Previously worked as a Post-graduate Teaching Assistant (PGTA) at UCL’s Electrical and Electronic Engineering (EEE) department from January to March 2020-2021. Engaged in teaching undergraduate modules in digital design (FPGA and embedded systems programming), Java, Object-Oriented Programming, and served as a guest lecturer in “Networks and Technologies for Distributed Deep Learning (DDL)” for the “Cloud and Edge Computing” MSc course.

πŸ’» Proficient in various software tools including Vivado, Quartus, Modelsim, Multisim, Lumerical, Alteryx, Tableau, and the Microsoft Office Suite. Passionate about pushing the boundaries of optical systems to enhance the capabilities of deep learning in distributed environments. πŸŒπŸ”¬

Professional Profiles : 🌐

Scopus

Linkedin

Google Scholar

πŸ† Awards :Β 

πŸ† In March 2020, He was honored with the IEEE Best Undergraduate Project in Telecommunications for showcasing excellence and innovation in the field. This recognition underscored her dedication to pushing the boundaries of technology.

πŸŽ“ August 2019 brought the prestigious Dean’s List acknowledgment for outstanding academic achievements in the Electrical and Electronic Engineering (EEE) department at UCL. This recognition reflected her commitment to academic excellence and contributions to the field.

πŸ… In May 2019, He was awarded the First Cullen Prize for the Best Undergraduate Project in the EEE department at UCL. The project, focusing on “Artificial Intelligence Techniques for FPGA-Driven Interconnects,” highlighted her proficiency in integrating AI with hardware solutions.

πŸ”Β Research Focus:

🌐 Distributed Systems

🌍 Optical Networks

πŸ”¬ Machine Learning

πŸ“šΒ Publication Impact and Citations :Β 

Scopus Metrics:

  • πŸ“Β Publications: 12 documents indexed in Scopus.
  • πŸ“ŠΒ Citations: A total of 19 citations for his publications, reflecting the widespread impact and recognition of Mr. Alessandro Ottino’s research within the academic community.

Google Scholar Metrics:

  • All Time:
    • Citations: 44 πŸ“–
    • h-index: 4 πŸ“Š
    • i10-index: 1 πŸ”
  • Since 2018:
    • Citations: 44 πŸ“–
    • h-index: 4 πŸ“Š
    • i10-index: 4 πŸ”

πŸ‘¨β€πŸ« A prolific researcher with significant impact and contributions in the field, as evidenced by citation metrics. πŸŒπŸ”¬

Publications ( Top Note ) :

1.Β  Time-domain learned digital back-propagation

Journal/Conference: 2020 IEEE Workshop on Signal Processing Systems (SiPS)

Published Year: 2020, Cited By: 10

2.Β  Optimization of 125-m Heterogeneous Multi-Core Fibre Design Using Artificial Intelligence

Journal/Conference: IEEE Journal of Selected Topics in Quantum Electronics

Published Year: 2021, Cited By: 8

3.Β  Traffic tolerance of nanosecond scheduling on optical circuit switched data center network

Journal/Conference: 2022 Optical Fiber Communications Conference and Exhibition (OFC)

Published Year:2022,Β  Cited By: 6

4.Β  Design optimization of uncoupled six-core fibers in standard cladding diameter using artificial intelligence

Journal/Conference: Optical Fiber Communication Conference

Published Year: 2021, Cited By: 4

5.Β  RAMP: a flat nanosecond optical network and MPI operations for distributed deep learning systems

Journal/Conference: Optical Switching and Networking

Published Year: 2024,Cited By: 3

6.Β  Design and transmission analysis of trench-assisted multi-core fibre in standard cladding diameter

Journal/Conference: Optics Express

Published Year: 2022,Cited By: 3

7.Β  Experimental demonstration of learned time-domain digital back-propagation

Journal/Conference: arXiv preprint arXiv:1912.12197

Published Year: 2019,Cited By: 3

8.Β  Optimal and Low Complexity Control of SOA-Based Optical Switching with Particle Swarm Optimisation

Journal/Conference: European Conference and Exhibition on Optical Communication

Published Year: 2022,Cited By: 2

9.Β  Experimental Analysis on Variations and Accuracy of Crosstalk in Trench-Assisted Multi-core Fibers

Journal/Conference: arXiv preprint arXiv:2008.08034

Published Year: 2020,Cited By: 2

10.Β  Genetic algorithm optimization of multi-core fibre transmission links based on silicon photonic transceivers

Journal/Conference: 2019 Optical Fiber Communications Conference and Exhibition (OFC)

Published Year: 2019, Cited By: 2