Zhanwei Liu | Computer Technology For Design | Excellence in Innovation Award

Prof. Zhanwei Liu | Computer Technology For Design | Excellence in Innovation Award

School of Information Science and Technology | China

Professor Zhanwei Liu is a distinguished faculty member and master’s supervisor at Shijiazhuang Tiedao University, China, with research expertise spanning intelligent optimization algorithms, computer vision, and cross-disciplinary engineering applications, emphasizing the enhancement of algorithmic convergence, stability, and efficiency. He has significantly contributed to the development of intelligent optimization frameworks, multi-UAV path planning, and image processing systems, integrating artificial intelligence with complex engineering problems. Holding advanced academic qualifications in computer science and information technology, complemented by professional training in intelligent systems and automation, Professor Liu demonstrates strong leadership in academic research and industry-oriented innovation. As a Professor at the School of Computer and Information Technology, he supervises postgraduate students in AI and optimization research and serves as an expert reviewer for national research programs such as the National Key R&D Program of China. He is an active member of the China Computer Federation (CCF) and the China Automation Society (CAA), also serving as a Provincial Science and Technology Commissioner, licensed technology transfer professional, and core member of provincial innovation teams, contributing to advancements in smart transportation, digital twin technologies, and engineering informatics. His primary research focuses on intelligent optimization algorithms, biomimetic swarm intelligence, computer vision, and complex system modeling, emphasizing adaptive strategies, transfer learning, and deep learning for improved performance in real-world engineering systems. Professor Liu’s exceptional academic and industrial achievements have earned him several provincial and national-level awards, including the Hebei Youth Science and Technology Innovation Award, Scientific and Technological Progress Prizes, and Industry-University-Research Collaboration Awards, along with recognition as a “Bohai Talent” Outstanding Contributor and as a developer of national technical standards for railway infrastructure monitoring. With more than  and growing international recognition, his impactful research is reflected in 3 published documents, 3 citations,  and an h-index of 1, underscoring his rising influence in the global AI and intelligent systems research community.

Profile: Scopus

Featured Publications

Liu, Z., & Wang, H. (2025). Study of course system adjustment mechanism based on the employment needs. In J. Smith & R. Chen (Eds.), Proceedings of the International Conference on Education and Employment Trends 2025 (pp. 45–52). Springer

Mr. Bilal Iqbal Ayubi |design|Best Researcher Award

Mr. Bilal Iqbal Ayubi |design|Best Researcher Award

Mr. Bilal Iqbal Ayubi,Shandong university, China

Bilal Iqbal Ayubi is a scholar at Shandong University in China, where he is engaged in advanced research. His work is contributing to the field, and he is recognized for his dedication and academic achievements within the university.

Summary:

Mr. Bilal Iqbal Ayubi is a strong candidate for the Best Researcher Award, given his significant contributions to the field of Electrical Engineering, particularly in High-Frequency Insulation and Discharge Mechanisms. His research is well-regarded in the academic community, as evidenced by his publications and the recognition he has received. His expertise in a critical area of study, combined with his collaborative abilities and professional recognition, make him a valuable asset to the field.

Professional Profiles:

🎓 Education :

Bilal Iqbal Ayubi is currently a Doctor of Philosophy candidate in Electrical Engineering at Shandong University, where he is awaiting his dissertation defense. His academic journey also includes a Level 7 Postgraduate Diploma in Electrical Engineering from City & Guilds London. His education has provided a robust foundation in advanced electrical engineering concepts, which he continues to expand through his research endeavors.

🏢 Experience:

Ayubi has an extensive research portfolio, with several publications in prestigious journals. His research includes exploring partial discharge transformation characteristics in polyimide insulations under high-frequency stress, and the mechanisms of atomic oxygen erosion protection for Kapton-type polyimide. He has also contributed to the development of a four-factor lifetime estimation model for polyimide insulations and investigated the suppression of particle movement and discharge using nanocomposite film coatings on DC GIL electrode surfaces. His work has been recognized and published in journals like Polymers, IEEE Transactions on Dielectrics and Electrical Insulation, IEEE Access, and IET Generation, Transmission & Distribution.

🛠️Skills:

Ayubi’s skill set includes advanced knowledge in high-frequency electrical insulation, partial discharge mechanisms, molecular dynamics simulations, and the application of design of experiment methods. His technical expertise is complemented by his ability to conduct complex research, analyze data, and contribute to the development of innovative solutions in the field of electrical engineering.

🔬Awards and Achievements:

Ayubi’s contributions to the field have earned him recognition, including the Wiley Outstanding Author of the Year award. This distinction highlights his commitment to advancing knowledge in electrical engineering through rigorous research and publication.

Research Focus:

Ayubi’s research primarily centers on High-Frequency Insulation, with a specific focus on Polyimide (PI) materials and Discharge Mechanisms. His work delves into the intricate behavior of polyimide insulations under high-frequency electric stress, contributing valuable insights into the materials’ properties and performance. His studies aim to enhance the reliability and efficiency of electrical insulation systems, particularly in high-frequency applications.

Conclusion:

Mr. Ayubi’s candidacy for the Best Researcher Award is compelling due to his focused research contributions, strong publication record, and professional achievements. While there are areas for potential growth, particularly in expanding his research focus and increasing his leadership roles, his current accomplishments make him a deserving candidate for the award. Recognizing Mr. Ayubi with this award would not only honor his past achievements but also encourage further advancements in his promising career.

Publications :

  • Mechanism Analysis and Potential Applications of Atomic Oxygen Erosion Protection for Kapton-Type Polyimide Based on Molecular Dynamics Simulations
    • Authors: Zhou, S.; Zhang, L.; Zou, L.; Ayubi, B.I.; Wang, Y.
    • Source: Polymers, 2024, 16(12), 1687.

 

  • A Four Factor Lifetime Estimation Model of Polyimide (PI) Insulations Using Full Factorial Design of Experiment Method (DOE)
    • Authors: Ayubi, B.I.; Li, Z.; Shengrui, Z.; Yiwei, W.; Liang, Z.
    • Source: IEEE Transactions on Dielectrics and Electrical Insulation, 2024, 31(2), pp. 844–851.

 

  • Reactive Molecular Dynamics of Atomic Oxygen Bombardment on Polyimide under Electric Field
    • Authors: Zhou, S.; Zhang, L.; Zou, L.; Wang, Y.; Ayubi, B.I.
    • Source: Proceedings of 2024 IEEE 7th International Electrical and Energy Conference (CIEEC), 2024, pp. 1562–1565.

 

  • Fuzzy Logic Approach for Lifetime Estimation of Polyimide (PI) Insulations Used at High-Frequency
    • Authors: Ayubi, B.I.; Li, Z.; Yiwei, W.; Shengrui, Z.; Liang, Z.
    • Source: Lecture Notes in Electrical Engineering, 2024, 1101, pp. 483–492.

 

  • Evolution Characteristics of Surface Discharge along Polyimide under High-Frequency Electric Stress
    • Authors: Ayubi, B.I.; Li, Z.; Huangkuan, X.; Chenlu, F.; Liang, Z.
    • Source: Diangong Jishu Xuebao/Transactions of China Electrotechnical Society, 2023, 38(5), pp. 1177–1189.

 

  • Study on Temperature-Frequency Partial Discharge Characteristics of Polyimide under High Frequency Electrical Stress Based on Improved Variational Modal Decomposition Denoising
    • Authors: Xu, H.; Zhang, L.; Ayubi, B.I.; Zou, L.; Wang, G.
    • Source: Diangong Jishu Xuebao/Transactions of China Electrotechnical Society, 2023, 38(3), pp. 565–576.

 

  • Surface Discharge Characteristics and Influencing Factors of Polyimide Insulations under High-Frequency Sinusoidal Voltages
    • Authors: Ayubi, B.I.; Zhang, L.; Xu, H.; Yan, Q.
    • Source: IET Generation, Transmission and Distribution, 2022, 16(5), pp. 1000–1012.

 

  • Equilibrium Optimizer-Based Variational Mode Decomposition Method for Partial Discharge Denoising
    • Authors: Huangkuan, X.; Xiaohui, Z.; Xu, J.; Ayubi, B.I.; Li, Z.
    • Source: 2022 4th International Conference on Smart Power and Internet Energy Systems (SPIES), 2022, pp. 1289–1294.

 

  • A Multi-physical Field Coupling Model and Analysis of Partial Discharge on PI Insulations under High-frequency Voltages
    • Authors: Iqbal Ayubi, B.; Li, Z.; Huangkuan, X.; Chenlu, F.
    • Source: 2022 4th International Conference on Smart Power and Internet Energy Systems (SPIES), 2022, pp. 69–75.

 

  • Study on the Electrodynamic Behavior of Linear Metal Particles in DC Gas Insulated Transmission Line
    • Authors: Cheng, H.; Wei, W.; Ayubi, B.L.; Sun, Y.; Zhang, L.
    • Source: Diangong Jishu Xuebao/Transactions of China Electrotechnical Society, 2021, 36(24), pp. 5283–5293.