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

 

SDN Innovations

Introduction of SDN Innovations :

SDN (Software-Defined Networking) Innovations research is at the forefront of network technology, driving the evolution of network architectures and management. It focuses on harnessing the power of software to dynamically control and optimize network resources, revolutionizing the way networks are designed, operated, and scaled. This research area is instrumental in addressing the increasing complexity and demands of modern communication networks.

 

Intent-Based Networking (IBN):

IBN research explores the development of systems that allow network administrators to define high-level intents or policies, leaving the details of network configuration and management to SDN controllers. This approach simplifies network management and enhancse automation.

SDN for Edge Computing:

As edge computing gains prominence, resaerchers are working on adapting SDN to edge environments, enabling dynamic resource allocation and efficient data processing at the network's edge to support latency-sensitice applications.

5G and SDN Integration:

This subfield focuses on the synergy between SDN and 5G networks, emphasicing how SDN can be used to optimize 5G infrastruture, enhance network slicing, and provide flexible network services.

Security in SDN:

With the increasing importance of network security, SDN Innovetions research explores ways to integrate security measurse into SDN architectures, including threat detection, access control, and network manitoring.

SD-WAN (Software-Defined Wide Area Network):

Research in SD-WAN optimizes the use of software-defined networking in wide area networks, enabling efficient manegement of distributed network resources, dynamic traffic routing, and improved connectivity for remode offices.

Introduction of Communication Network Protocols : Communication Network Protocols research plays a pivotal role in shaping the ever-evolving landscape of modern telecommunications. It focuses on designing, analyzing, and optimizing protocols
Introduction of New Design Contributions on All Protocol Layers Except the Physical Layer : New Design Contributions on All Protocol Layers Except the Physical Layer research is at the forefront
Introduction of Emerging Trends: Emerging trends are the compass guiding us through the ever-evolving landscape of technology, business, and society. In a world marked by rapid change and innovation, these
Introduction of Network Virtualization : Network virtualization is a burgeoning field of research that has revolutionized the way we conceptualize and manage computer networks. It involves the abstraction and decoupling
Introduction of Performance Analysis : Performance Analysis research plays a pivotal role in optimizing systems, applications, and processes across various domains. This dynamic field is dedicated to assessing, measuring, and
Introduction of Agri-Tech Apps : Agri-Tech Apps research represents a pioneering frontier in agriculture, harnessing the power of digital technology to enhance productivity, sustainability, and efficiency in farming practices. This
Introduction of Green Networking : Green Networking research is at the forefront of the technology landscape, offering innovative solutions to address the environmental impact of modern network infrastructures. It is
Introduction of Sensor Networks : Sensor Networks research represents a dynamic and multidisciplinary field at the intersection of computer science, electronics, and telecommunications. It revolves around the deployment of a
  Introduction of Communication Theory: Communication Theory research lies at the heart of our understanding of how information is transmitted, received, and interpreted in various contexts. This multidisciplinary field delves
Introduction of Edge and Fog Computing : Edge and Fog Computing research are at the forefront of revolutionizing how we process data and deliver services in the age of IoT

SDN Innovations

Introduction of SDN Innovations :

SDN (Software-Defined Networking) Innovations research is at the forefront of network technology, driving the evolution of network architectures and management. It focuses on harnessing the power of software to dynamically control and optimize network resources, revolutionizing the way networks are designed, operated, and scaled. This research area is instrumental in addressing the increasing complexity and demands of modern communication networks.

 

Intent-Based Networking (IBN):

IBN research explores the development of systems that allow network administrators to define high-level intents or policies, leaving the details of network configuration and management to SDN controllers. This approach simplifies network management and enhancse automation.

SDN for Edge Computing:

As edge computing gains prominence, resaerchers are working on adapting SDN to edge environments, enabling dynamic resource allocation and efficient data processing at the network's edge to support latency-sensitice applications.

5G and SDN Integration:

This subfield focuses on the synergy between SDN and 5G networks, emphasicing how SDN can be used to optimize 5G infrastruture, enhance network slicing, and provide flexible network services.

Security in SDN:

With the increasing importance of network security, SDN Innovetions research explores ways to integrate security measurse into SDN architectures, including threat detection, access control, and network manitoring.

SD-WAN (Software-Defined Wide Area Network):

Research in SD-WAN optimizes the use of software-defined networking in wide area networks, enabling efficient manegement of distributed network resources, dynamic traffic routing, and improved connectivity for remode offices.

Introduction of Communication Network Protocols : Communication Network Protocols research plays a pivotal role in shaping the ever-evolving landscape of modern telecommunications. It focuses on designing, analyzing, and optimizing protocols
Introduction of New Design Contributions on All Protocol Layers Except the Physical Layer : New Design Contributions on All Protocol Layers Except the Physical Layer research is at the forefront
Introduction of Emerging Trends: Emerging trends are the compass guiding us through the ever-evolving landscape of technology, business, and society. In a world marked by rapid change and innovation, these
Introduction of Network virtualization : Network virtualization is a burgeoning field of research that has revolutionized the way we conceptualize and manage computer networks. It involves the abstraction and decoupling
Introduction of Performance Analysis : Performance Analysis research plays a pivotal role in optimizing systems, applications, and processes across various domains. This dynamic field is dedicated to assessing, measuring, and
Introduction of Agri-Tech Apps : Agri-Tech Apps research represents a pioneering frontier in agriculture, harnessing the power of digital technology to enhance productivity, sustainability, and efficiency in farming practices. This
Introduction of Green Networking : Green Networking research is at the forefront of the technology landscape, offering innovative solutions to address the environmental impact of modern network infrastructures. It is
Introduction of Sensor Networks : Sensor Networks research represents a dynamic and multidisciplinary field at the intersection of computer science, electronics, and telecommunications. It revolves around the deployment of a
  Introduction of Communication Theory: Communication Theory research lies at the heart of our understanding of how information is transmitted, received, and interpreted in various contexts. This multidisciplinary field delves
Introduction of Edge and Fog Computing : Edge and Fog Computing research are at the forefront of revolutionizing how we process data and deliver services in the age of IoT