Mr. JeongHun Woo | Network Services | Excellence in Research

Mr. JeongHun Woo | Network Services | Excellence in Research

Mr. JeongHun Woo, Changwon National University, South Korea

Mr. JeongHun Woo is a dedicated researcher specializing in Network Services, Wireless Networks, and Streaming Optimization. He completed his education at Changwon National University, South Korea, and has been actively involved in cutting-edge research projects, particularly in AI-based optimization and predictive analytics. His work on Yard Image AI Recognition for logistics optimization resulted in a technology patent, showcasing his innovative contributions to industrial applications. Additionally, his 2023 first-author publication on adaptive bitrate algorithms and bandwidth prediction has significantly enhanced video streaming quality. His ongoing research on CNC tool replacement cycle prediction highlights his expertise in applying machine learning to industrial automation. With a strong foundation in AI-driven network optimizations and industrial predictive modeling, Mr. Woo continues to push technological boundaries, contributing valuable insights to academia and industry. His research excellence makes him a key player in advancing intelligent network systems. 📡📶🔬

🌏 Professional Profile

Google Scholar

🏆 Suitability for Award 

Mr. JeongHun Woo’s outstanding contributions to network optimization, AI-driven prediction models, and wireless communication technologies make him a strong candidate for the Excellence in Research Award. His groundbreaking work in adaptive video streaming algorithms has significantly improved the Quality of Experience (QoE) in streaming services, addressing critical issues in network bandwidth prediction. His Smart Yard AI project, which optimizes industrial logistics through image recognition, showcases his ability to bridge academic research with real-world applications. The issuance of a technology patent from his research further validates the impact of his work. His ongoing research on predictive maintenance for CNC machine tools highlights his versatility in applying AI-driven methodologies to industrial automation and smart manufacturing. His ability to produce innovative, high-impact research across wireless networks, AI, and predictive analytics sets him apart as a leading researcher in his field. 🏆📡📊

🎓 Education 

Mr. JeongHun Woo pursued his education at Changwon National University, South Korea, where he developed a strong foundation in Network Services, Wireless Communication, and AI-Driven Optimization. His academic journey equipped him with expertise in machine learning applications, network bandwidth prediction, and industrial AI integration. Throughout his education, he focused on research-driven problem-solving, contributing to the development of streaming optimization algorithms and predictive analytics for industrial automation. His exposure to AI-powered logistics and wireless technologies has positioned him as an emerging expert in intelligent network solutions. His academic background not only fueled his passion for research but also enabled him to lead innovative projects such as AI-based yard logistics optimization and CNC machine tool lifecycle prediction. With a strong interdisciplinary approach, his education has played a crucial role in shaping his research excellence and industry-driven solutions. 🎓📚🔍

👨‍🔬 Experience

Mr. JeongHun Woo has been deeply engaged in research projects that integrate AI, wireless communication, and industrial automation. He played a key role in the Smart Yard Industry-Academic Cooperation Project (2022), where he developed an AI-based image recognition system to optimize logistics and process flow in industrial yards. This work led to the successful issuance of a technology patent, reinforcing his contributions to real-world AI applications.

In 2023, he authored a research paper focusing on adaptive bitrate algorithms and bandwidth prediction for enhanced video streaming experiences. His work in network bandwidth prediction using gated recurrent unit models demonstrated his expertise in machine learning-driven optimizations. Currently, he is working on predicting CNC machine tool replacement cycles, leveraging AI for predictive maintenance in smart manufacturing. His diverse experience across network systems, industrial AI applications, and streaming optimizations showcases his strong research acumen and technological impact. 🏭📡🤖

🏆 Awards and Honors 

Mr. JeongHun Woo has been recognized for his pioneering research in wireless networks, AI-driven optimization, and industrial analytics. His Smart Yard AI Recognition project led to the issuance of a technology patent, highlighting the innovative real-world impact of his research. His 2023 first-author publication on adaptive bitrate streaming and bandwidth prediction has been widely acknowledged in the field of wireless networks and multimedia communication.

He has been actively involved in industry-academic collaborative projects, leading groundbreaking research that merges AI with industrial automation. His contributions to predictive analytics for CNC machine tool maintenance have positioned him at the forefront of smart manufacturing and AI-driven optimization. Through his patented technology, high-impact publications, and ongoing research in predictive maintenance, Mr. Woo has demonstrated exceptional excellence in research, making him a deserving candidate for the Research for Excellence in Research Award. 🏆📜🚀

🔬 Research Focus 

Mr. JeongHun Woo’s research revolves around Network Services, Wireless Networks, Streaming Optimization, and AI-driven Industrial Automation. His work is at the intersection of machine learning, predictive analytics, and real-world network applications.

His key research areas include:

Streaming Optimization: Developing buffer-based adaptive bitrate algorithms to improve the Quality of Experience (QoE) for video streaming.
AI for Industrial Automation: Leading AI-driven logistics optimization through yard image recognition and predictive maintenance in smart manufacturing.
Wireless Networks & Bandwidth Prediction: Utilizing deep learning (Gated Recurrent Unit models) for accurate network bandwidth forecasting.
Predictive Maintenance: Researching CNC machine tool lifecycle prediction to enhance manufacturing efficiency and reduce downtime.

His interdisciplinary approach combining network optimizations, AI, and industrial analytics makes him a key contributor to next-generation intelligent systems. 🌍📶📊

📚 Publication Top Notes:

Title: Improving the Quality of Experience of Video Streaming Through a Buffer-Based Adaptive Bitrate Algorithm and Gated Recurrent Unit-Based Network Bandwidth Prediction
Published Year: 2024

 

 

Assoc Prof Dr. Jerzy Domżał | SDN controllers | Best Researcher Award

Assoc Prof Dr. Jerzy Domżał | SDN controllers | Best Researcher Award

Assoc Prof Dr. Jerzy Domżał, AGH University of Krakow, Poland

Dr. Domżał is a distinguished academic in Telecommunications with a robust educational background, including a Master’s, Ph.D., and Habilitation from AGH University of Krakow. As the Director of the Institute of Telecommunications since 2020, he has demonstrated significant leadership and expertise. His research, which addresses critical issues in optical networks and future internet technologies, is reflected in over 35 published articles, two patents, and three authored books. Dr. Domżał’s involvement in major European research projects and his numerous accolades, including scholarships from the Polish Minister of Science and Higher Education and a science award from POLITYKA magazine, underscore his contributions to advancing telecommunications infrastructure. His roles on various organizational committees further highlight his active engagement in the research community.

Professional Profile:

Scopus
Orcid
Google Scholar

Suitability for the Award

Dr. Jerzy Domżał is exceptionally suited for the Research for Best Researcher Award due to his extensive research experience, impactful contributions to the field of telecommunications, and leadership roles in both academic and professional settings. His work on network congestion control, optical networks, and flow-aware networks aligns well with the award’s criteria, showcasing his dedication to advancing telecommunications research.

Educational Background:

Dr. Domżał’s educational qualifications include a Master’s degree, Ph.D., and Habilitation in Telecommunications from AGH University of Krakow, showcasing a strong academic foundation in his field.

Professional Experience and Leadership:

His career trajectory includes roles as Research Assistant, Assistant Professor, and Associate Professor at AGH University of Krakow. He has served as the Director of the Institute of Telecommunications since 2020, reflecting his leadership and expertise in the field.

Research Contributions and Projects:

Dr. Domżał has been involved in several significant European research projects (e.g., Nobel, SmoothIT, EuroNF, e-Photon/ONe(+), BONE), focusing on optical networks, traffic engineering, and future internet technologies. His research addresses critical issues like network congestion control and flow-based services, which are crucial for advancing telecommunications infrastructure.

Publications and Patents:

He has published over 35 articles in JCR-listed journals, contributed to two patents and seven patent applications, and authored three books. His work has been recognized with numerous citations, highlighting the impact and relevance of his research.

Awards and Recognitions:

Dr. Domżał has received several prestigious awards, including scholarships from the Polish Minister of Science and Higher Education, a grant from the National Centre for Research and Development, and a science award from POLITYKA magazine. These accolades reflect his outstanding contributions to the field.

Organizational and Committee Roles:

His roles as Co-chair for GLOBECOM symposia, Local Organizing Committee Chair for ITC’2012, and member of technical program committees for IEEE conferences demonstrate his active engagement in shaping the research landscape and contributing to the advancement of telecommunications.

Publication Top Notes:

  • Title: A Survey on Methods to Provide Multipath Transmission in Wired Packet Networks
    • Year: 2015
    • Cited by: 36
  • Title: New Congestion Control Mechanisms for Flow-Aware Networks
    • Year: 2008
    • Cited by: 27
  • Title: QoS-Aware Net Neutrality
    • Year: 2009
    • Cited by: 25
  • Title: A Survey on Methods to Provide Interdomain Multipath Transmissions
    • Year: 2016
    • Cited by: 24
  • Title: Flow-Aware Multi-Topology Adaptive Routing
    • Year: 2014
    • Cited by: 24