Lingyu Ai | Optoelectronic Information | Best Researcher Award

Prof. Lingyu Ai | Optoelectronic Information | Best Researcher Award

Associate Professor at Jiangnan university, China

Lingyu Ai is an Associate Professor at Jiangnan University with deep expertise in 3D imaging and display technologies. Her work has significantly contributed to advancing large-scale naked-eye 3D display systems and interdisciplinary applications in AR/VR and biomedical imaging. She is a committee member of the 3D Imaging and Display Professional Committee and has been widely recognized for her leadership in engineering innovation. Her academic path and project achievements reflect a strong commitment to applying engineering solutions to real-world visualization challenges, earning her respect in both academic and industrial communities.

Profile

Scopus

Education

Lingyu Ai earned her Ph.D. in Electronic Engineering from the Holodigilog Human Media Research Center at Kwangwoon University, South Korea. During her doctoral studies, she was mentored by Professor Eun-Soo Kim, a distinguished scientist and recipient of the Korean Presidential Award. Her educational background laid a solid theoretical and experimental foundation for her later pursuits in optical systems, imaging, and digital media technologies. Her international education experience has equipped her with a global perspective and advanced methodologies in the development of 3D display systems.

Experience

Since completing her doctoral studies, Ai has established herself as a leading academic and researcher in 3D visualization. At Jiangnan University, she has led and participated in five national-level projects, including those funded by the National Natural Science Foundation and the Ministry of Science and Technology’s Foreign Expert Program. Her research is characterized by its strong applicability and commercial potential, particularly in designing deployable 3D imaging systems and display technologies. Her experience spans interdisciplinary domains including electronics, optics, artificial intelligence, and biomedical engineering. Notably, her research results have not only been published but also transformed into demonstrable, market-ready technologies that have garnered industry acclaim.

Research Interests

Professor Ai’s primary research interests lie in the development of large-scale naked-eye 3D displays, subwavelength structure modeling, and 3D imaging systems tailored for chip inspection and biomedical applications. She also explores positioning and attitude estimation techniques for AR/VR, circuit miniaturization, and digital content generation. A significant focus of her current work involves integrating subwavelength structure diffraction models with deep learning algorithms to solve complex inverse diffraction problems. Her long-term research goal is to establish a world-leading 3D imaging and display research team capable of producing cutting-edge equipment with billion-level industrial impact. She continues to investigate how deep learning can enhance physical model-driven imaging, laying the groundwork for future innovations in metasurface lens design and flexible 3D displays.

Awards

Lingyu Ai has received two second-class awards for scientific and technological innovation at the municipal level or higher. These honors recognize her substantial contributions to the advancement of optical imaging and display technologies and highlight her role in fostering interdisciplinary technological integration. Her ability to bridge theoretical research with practical implementation has made her a standout figure in the scientific community. The recognition also underscores her capacity to lead complex projects with wide-reaching commercial and societal impact.

Publications

  • Title: Nanometer-scale wafer surface defect measurement based on state-space digital holographic microscopy
    Authors: Shengcheng Geng, Lingyu Ai, Yujia Gao, Myungjin Cho, Kanghee Won

  • Title: Generating real-scene hologram through light field imaging and deep learning
    Authors: Rui Wang, Lingyu Ai, Yinghui Wang, Yuqing Ni, Myungjin Cho

Conclusion

Lingyu Ai exemplifies the fusion of interdisciplinary research and engineering innovation. Her academic foundation in electronic engineering, combined with her applied research in 3D imaging and visualization technologies, has positioned her as a leader in the digital optics and AR/VR domain. Through a combination of national research leadership, strong publication record, and technological innovation, she has built a reputation for advancing frontier technologies into practical solutions. Her trajectory continues to shape the future of display systems, offering transformative impacts across digital economy sectors such as visual IoT, medical diagnostics, and immersive computing.

Enamul Khan | Electronics and Communication Engineering | Best Researcher Award

Mr. Enamul Khan | Electronics and Communication Engineering | Best Researcher Award

PhD Scholar at Aliah University, India

Enamul Khan is a dedicated researcher in the field of RF and Communication Engineering. Currently pursuing his Ph.D. at Aliah University, Kolkata, he has demonstrated a strong commitment to advancing research in dielectric-coated conical structures and their applications in antenna design. With an academic background rooted in electronics and communication engineering, Enamul has made significant contributions to scholarly research, particularly in antenna design, frequency reduction, and bandwidth enhancement. His research endeavors have been published in reputed journals and presented at international conferences. His technical proficiency and analytical approach make him a valuable contributor to the field of wireless communication and antenna technology.

Profile

Scopus

Education

Enamul Khan has consistently excelled in his academic pursuits. He earned his Bachelor of Technology (B.Tech) in Electronics and Communication Engineering from Aliah University in 2015, followed by a Master of Technology (M.Tech) degree from the same institution in 2017, securing commendable academic scores. Currently, he is engaged in his Ph.D. research at Aliah University, focusing on the design and analysis of dielectric-coated conical structures in the presence of a loop antenna. His academic journey reflects his keen interest in advancing wireless communication technologies and high-frequency structural simulations.

Experience

Enamul Khan has accumulated significant research experience throughout his academic career. As a research scholar, he has actively worked on various projects related to RF engineering and antenna design, contributing to both theoretical and experimental advancements. His collaboration with esteemed researchers has allowed him to develop expertise in simulation tools like HFSS, MATLAB, and CST. In addition to his research, he has participated in academic workshops, technical symposiums, and university-level projects, further solidifying his technical acumen and problem-solving skills in the field of electronics and communication engineering.

Research Interests

Enamul Khan’s research interests primarily revolve around RF and communication engineering, with a particular emphasis on antenna design, frequency reconfigurability, and bandwidth enhancement. His Ph.D. research focuses on dielectric-coated conducting conical structures and their interaction with loop antennas, aiming to improve the efficiency and performance of antennas in wireless applications. Additionally, he has explored topics such as miniaturization of slot antennas, complementary slot resonator antennas, and monopole antennas. His research contributions have paved the way for innovative antenna technologies suitable for modern communication systems.

Awards and Achievements

Enamul Khan’s academic and research excellence has been recognized through various awards and scholarships. He received the Ph.D. Research Assistantship (SVMCM) in 2018 from Aliah University, along with an M.Tech Scholar Assistantship in 2015. His outstanding academic performance earned him a B.Tech Scholar Assistantship from the Chief Minister in 2011. Apart from his academic accolades, he also represented his university in sports, securing a volleyball certificate at the Inter-University East Zone Volleyball Games in 2013. His achievements reflect his multifaceted talents and dedication to both academics and extracurricular activities.

Selected Publications

Enamul Khan, SK. Moinul Haque, Prasanta Halder, Saeed Roshani, and Laxmikant Minz, “A Novel Approach In Analysing And Designing of Dielectric Coated Conducting Conical Antennas With Enhanced Bandwidth,” ETRI Journal, 2025.

Enamul Khan, SK. Moinul Haque, MD. Ataur Safi Rahaman Laskar, “Design of Nonplanar Monopole Antennas with Enhanced Frequency Reduction for Short-Range Wireless Applications,” IJCS Journal, 2025.

Enamul Khan, MD. Ataur Safi Rahaman Laskar, Khan Masood Parvez, SK. Moinul Haque, “3D-Structure Coupled Monopole Designs with Lower Frequency Resonance,” ETRI Journal, 2024.

MD. Ataur Safi Rahaman Laskar, Khan Masood Parvez, Enamul Khan, SK. Moinul Haque, “Compact Complementary Slot Resonator Antenna with L-Probe Feed Excitation for Wireless Communication,” IJE Journal, 2024.

Enamul Khan, SK. Moinul Haque, MD. Ataur Safi Rahaman Laskar, Khan Masood Parvez, “Bandwidth Enhancement and Improvement of Directivity of a Composite Conical Structure in the Presence of a Circular Loop Antenna,” 3rd International Conference on Computational Electronics for Wireless Communications, December 2023.

Enamul Khan, Khan Masood Parvez, SK. Moinul Haque, “Effect of Four Different Types of Loops in Presence of Conducting Cone,” 5th International Conference on Multimedia, Signal Processing and Communication Technologies (IMPACT), November 2022.

Enamul Khan, Jinia Aktar, Khan Masood Parvez, SK. Moinul Haque, “Slot Antenna Miniaturization Using Copper Coated Circular Dielectric Material,” National Conference on Communications (NCC), February 2019.

Conclusion

Enamul Khan is a dedicated researcher and academician whose contributions to RF and communication engineering have been noteworthy. His research in dielectric-coated conical structures and innovative antenna designs showcases his commitment to advancing wireless communication technology. Through his publications, technical expertise, and academic achievements, he has established himself as a promising scholar in the field. His future endeavors aim to further enhance the efficiency and applicability of antenna technologies in modern communication systems, making significant contributions to the domain of RF engineering.