Dr. Muhammad Asad Saleem | Information Security | Best Researcher Award

Dr. Muhammad Asad Saleem | Information Security | Best Researcher Award

Post Doctoral Researcher, University of Electronic Science and Technology of China

Dr. Muhammad Asad Saleem is a distinguished researcher and academic in cyberspace security, currently serving as a Postdoctoral Researcher at the University of Electronic Science and Technology of China 🇨🇳. With a strong background in computer science, he has contributed significantly to network security, cryptographic protocols, and authentication mechanisms 🔐. His research has been recognized internationally, earning him multiple high-impact publications 📚 in IEEE Transactions and Q1 journals. Passionate about fostering cybersecurity innovations, Dr. Saleem is dedicated to enhancing vehicular networks, blockchain security, and IoT authentication 🚗💡.

Publication Profile

🎓 Education

Dr. Saleem holds a Ph.D. in Computer Science and Technology (2021–2024) from the University of Electronic Science and Technology of China 🎖️, where he received the Excellent Student Award for his outstanding academic performance (CGPA 3.9/4.0). His doctoral research focused on privacy-preserving authenticated key-establishment protocols for vehicular ad-hoc networks 🚘🔑. Prior to that, he completed an MS in Computer Science (2018–2020) from COMSATS University Islamabad 🇵🇰, where he achieved a perfect 4.0/4.0 CGPA and was recognized as the Overall Batch Topper 🏆.

💼 Experience

Dr. Saleem has a strong academic career, beginning as a Lab Engineer (2018–2021) at COMSATS University Islamabad, where he taught foundational courses like Programming, Database Systems, and Network Security 💻. He later served as a Visiting Lecturer (2020–2021) at the University of Sahiwal, teaching advanced computer science subjects. From 2021 to 2024, he was a Lecturer in Computer Science at the Higher Education Department of Punjab, where he trained future cybersecurity experts. His transition to a Postdoctoral Researcher in cyberspace security at UESTC, China marks his continued pursuit of cutting-edge research in cryptographic algorithms and vehicular security systems 🌐🔒.

🏅 Awards and Honors

Dr. Saleem’s academic excellence and research contributions have earned him several prestigious awards 🏆. He was honored with the Excellent Student Award during his Ph.D. studies 📜 and was the Overall Batch Topper in his MS program 🥇. His high-impact publications in top-tier Q1 journals have further solidified his reputation as a leading cybersecurity researcher.

🔍 Research Focus

Dr. Saleem’s research primarily revolves around network security, cryptographic authentication, and secure vehicular networks 🚗🔑. His work focuses on designing lightweight and efficient security protocols for IoT, blockchain-based systems, and intelligent transportation networks 🌍🔐. His contributions have advanced secure key establishment mechanisms, privacy-preserving authentication, and cybersecurity solutions for smart cities and industrial IoT 💡🔒.

📝 Conclusion

Dr. Muhammad Asad Saleem is a dynamic researcher and educator, making significant strides in cybersecurity and network authentication 🛡️. With a strong academic background, extensive research experience, and a passion for innovation, he continues to contribute to the evolving landscape of secure communication systems. His high-impact publications and academic excellence place him among the most promising researchers in the field of cyberspace security 🚀.

📚 Publications 

A Provably Secure Lightweight Key Agreement Protocol for Wireless Body Area Networks in Healthcare Systems (2023) – IEEE Transactions on Industrial Informatics (DOI Link) – Cited by 50+ articles 🔬.

Blockchain and PUF-Based Secure Key Establishment Protocol for Cross-Domain Digital Twins in IIoT Architecture (2023) – Journal of Advanced Research (DOI Link) – Cited by 40+ articles 📡.

Provably Secure Authentication Protocol for Mobile Clients in IoT Environment Using Puncturable Pseudorandom Function (2021) – IEEE Internet of Things Journal (DOI Link) – Cited by 60+ articles 📲.

Authenticated Key Management Protocol in Fog Computing-Based Internet of Vehicles Deployment (2020) – IEEE Internet of Things Journal (DOI Link) – Cited by 55+ articles 🚘.

An Efficient and Physically Secure Privacy-Preserving Key-Agreement Protocol for Vehicular Ad-hoc Networks (2023) – IEEE Transactions on Intelligent Transportation Systems (DOI Link) – Cited by 35+ articles 🚗.

A Provably Secure Mobile User Authentication Scheme for Big Data Collection in IoT-Enabled Maritime Intelligent Transportation System (2023) – IEEE Transactions on Intelligent Transportation Systems (DOI Link) – Cited by 45+ articles ⚓.

Secure RFID-Assisted Authentication Protocol for Vehicular Cloud Computing Environment (2024) – IEEE Transactions on Intelligent Transportation Systems (DOI Link) – Cited by 30+ articles ☁️🚘.

A Cost-Efficient Anonymous Authenticated and Key Agreement Scheme for V2I-Based Vehicular Ad-hoc Networks (2024) – IEEE Transactions on Intelligent Transportation Systems (DOI Link) – Cited by 25+ articles 🏎️.

Lightweight and Secure Multi-Factor Authentication Scheme in VANETs (2023) – IEEE Transactions on Vehicular Technology (DOI Link) – Cited by 40+ articles 🏁.

Cloud-Assisted Secure and Cost-Effective Authenticated Solution for Remote Wearable Health Monitoring System (2023) – IEEE Transactions on Network Science and Engineering (DOI Link) – Cited by 50+ articles ⌚🔒.

Mr. Mingi Kwon | Computer Engineering | Best Researcher Award

Mr. Mingi Kwon | Computer Engineering | Best Researcher Award

University of California San Diego, United States

Mingi Kwon is an aspiring computer engineer with a strong foundation in VLSI design, computer architecture, and hardware acceleration. 🎓 Currently pursuing an MS in Electrical and Computer Engineering at the University of California, San Diego, he previously earned his BS in Electrical Engineering from Hanyang University, South Korea. With a deep interest in optimizing hardware for AI acceleration, he has worked on advanced projects involving reconfigurable systolic arrays, low-power circuit design, and RISC-V processor architectures. His dedication to high-performance computing and low-power hardware systems is evident through his research contributions and hands-on experience with industry-standard tools. 🚀

Publication Profile

ORCID

🎓 Education:

Mingi Kwon is currently pursuing his Master of Science in Electrical and Computer Engineering at the University of California, San Diego (2024–2026), specializing in computer engineering. He completed his Bachelor of Science in Electrical Engineering from Hanyang University, South Korea (2019–2024), graduating with an impressive GPA of 3.97/4.5. 📚 His academic journey has been focused on advanced coursework, including computer architecture, low-power VLSI design, and deep learning accelerators, equipping him with a strong foundation in hardware and system design.

💼 Experience:

Mingi has gained significant hands-on experience through various projects and his military service. During his undergraduate studies, he developed a Cyclone IV GX-Based Reconfigurable 2D Systolic Array for AI Acceleration, optimizing power consumption and chip area. He also worked on a RISC-V 5-stage Pipeline Processor with an advanced branch predictor, significantly improving execution efficiency. 🔧 Additionally, he served as a cybersecurity specialist and squad leader in the Republic of Korea Army (2020–2022), where he managed encrypted communications and network security while leading a team of 20 soldiers, earning a Distinguished Service Award. 🏅

🏆 Awards and Honors:

Mingi’s excellence in academics and research has been recognized through multiple awards. He was named to the Dean’s List (2022) with a perfect GPA of 4.5/4.5. 🎖️ He also received the National Logic Chip Design Track Scholarship (2023–2024), awarded by the South Korean government for outstanding achievements in electrical engineering. His leadership and dedication in the military earned him a Distinguished Service Award (2021–2022) for enhancing work efficiency and team collaboration.

🔬 Research Focus:

Mingi’s research is centered around hardware acceleration for AI, low-power VLSI design, and computer architecture. 🖥️ His work on systolic arrays focuses on optimizing deep learning computations with reconfigurable architectures, improving efficiency in sparse neural networks. He has also explored low-power circuit design, reducing leakage power and optimizing combinational logic for improved energy efficiency. His expertise extends to processor architecture, particularly RISC-V pipeline design and branch prediction, enhancing execution speed and minimizing stalls.

🔚 Conclusion:

Mingi Kwon is a highly motivated researcher and engineer passionate about bridging the gap between hardware and AI acceleration. 🚀 With extensive experience in VLSI design, digital systems, and processor architecture, he is committed to advancing high-performance, energy-efficient computing systems. His technical expertise, research achievements, and leadership skills position him as a promising innovator in the field of computer engineering. 💡

📄 Publication:

Circuit-Centric Genetic Algorithm for the Optimization of a Radio-Frequency ReceiverElectronics