Sasa Sladic | Power Electronics involves & Converters | Innovative Research Award

Innovative Research Award

Sasa Sladic
University of Rijeka

Sasa Sladic
Affiliation University of Rijeka
Country Croatia
Scopus ID 11139092000
Documents 22
Citations 127
h-index 6
Subject Area Power Electronics involves & Converters
Event World Electrical Engineering Awards
ORCID 0000-0003-2566-0227

The Innovative Research Award recognizes scholarly excellence and sustained contributions to electrical engineering research. This academic profile presents the research background, publication activity, scientific contributions, and professional impact of Sasa Sladic, whose work has contributed to advances in power electronics and converter technologies through research, collaboration, and dissemination of engineering knowledge.[1]

Abstract

Sasa Sladic has developed a research portfolio centered on power electronics, converter technologies, and modern electrical engineering applications that support efficient energy conversion, industrial automation, and sustainable power systems. Through peer-reviewed publications and collaborative investigations, the research emphasizes reliable converter design, performance optimization, and practical engineering implementation. The documented scholarly output, citation record, and interdisciplinary engagement demonstrate continued participation in advancing electrical engineering knowledge while supporting innovation in academic and industrial environments. These achievements collectively reflect consistent scientific productivity, technical competence, and meaningful contributions to contemporary engineering research and professional development.[2]

Keywords

Power Electronics, Power Converters, Energy Conversion, Electrical Engineering, Industrial Electronics, Converter Control, Renewable Energy Integration, Smart Power Systems, High-Efficiency Converters, Electrical Machines.

Introduction

Power electronics has become an essential discipline for efficient electrical energy conversion across transportation, manufacturing, renewable energy, and smart grid infrastructures. Research in converter technologies improves energy efficiency, system reliability, and operational flexibility while supporting the transition toward sustainable electrical systems. Academic investigations in this area continue to influence industrial innovation through improved control strategies, semiconductor applications, and converter architectures designed for demanding operating environments.[3]

Research Profile

Affiliated with the University of Rijeka, Sasa Sladic has established an active academic profile through publications indexed in international databases and recognized citation performance. The available research metrics indicate sustained engagement with electrical engineering topics, particularly power electronics and converter technologies. Collaboration with researchers and participation in scientific dissemination have contributed to visibility within the engineering community while supporting continued professional development.[1]

Research Contributions

The research contributions emphasize converter modeling, electrical power conversion, system optimization, and engineering methodologies that improve operational efficiency and reliability. These investigations support modern electrical infrastructures by addressing practical challenges in converter performance, control, and integration with advanced energy systems. Such work contributes to ongoing technological progress and provides valuable knowledge for future engineering developments and industrial implementation.[4]

Publications

The publication record comprises twenty-two indexed documents with measurable citation impact, reflecting consistent scholarly productivity across electrical engineering research themes. Published studies demonstrate technical rigor, peer-reviewed validation, and contributions to the broader understanding of converter technologies, electrical systems, and applied engineering solutions. This publication activity illustrates continuous academic engagement and sustained dissemination of scientific knowledge through internationally recognized research platforms.[2]

Research Impact

The documented citation record and h-index indicate that the published research has attracted attention within the scientific community. Contributions to power electronics provide useful references for researchers, educators, and practicing engineers interested in converter technologies and efficient electrical energy systems. Continued scholarly engagement supports knowledge transfer, interdisciplinary collaboration, and ongoing innovation within electrical engineering research and industrial practice.[5]

Award Suitability

Recognition through the Innovative Research Award is appropriate for researchers who demonstrate measurable scholarly productivity, technical excellence, and meaningful contributions within their discipline. The documented publication record, citation performance, engineering specialization, and sustained research activities collectively reflect qualities associated with academic distinction and continued advancement of power electronics and converter research within the international engineering community.[3]

Conclusion

Sasa Sladic’s academic profile represents a sustained commitment to electrical engineering research through publications, technical investigations, and contributions to power electronics and converter technologies. The combination of scholarly productivity, citation impact, and institutional affiliation illustrates an active research career that supports scientific advancement while promoting engineering innovation. These accomplishments provide a solid foundation for professional recognition within international academic award programs.[1]

External Links

References

  1. Elsevier. (n.d.). Scopus author details: Long Jiao, Author ID 11139092000. Scopus
    https://www.scopus.com/authid/detail.uri?authorId=11139092000
  2. ORCID. (n.d.). Research profile of Sasa Sladic.
    https://orcid.org/0000-0003-2566-0227
  3. Bojan Kranjec; Sasa Sladic; Wojciech Giernacki; Neven Bulic. PV System Design and Flight Efficiency Considerations for Fixed-Wing Radio-Controlled Aircraft—A Case Study.
    https://doi.org/10.3390/en11102648
  4. S Sladic, E Zivic. Photovoltaic-Related “Black Swan” Hypothesis for Electric Power System: Phenomenology, Simulations, Experiences, and Prevention.
    https://doi.org/10.3390/s26031077
  5. World Electrical Engineering Awards. (2026). Award Information.
    https://electricalaward.com/

Xubin Liu | Smart Grids and Microgrids | Young Scientist Award

Assist. Prof. Dr. Xubin Liu | Smart Grids and Microgrids | Young Scientist Award

Associate Professor of  Central South University, China

Xubin Liu is an accomplished scholar and researcher in electrical engineering, specializing in integrated energy systems, renewable energy integration, power system optimization, and microgrid control. Currently serving as an Associate Professor at the School of Automation, Central South University, he has made significant contributions to advancing low-carbon energy systems, fault ride-through strategies, voltage-frequency support mechanisms, and intelligent dispatching methods. His work bridges cutting-edge theory and practical solutions, with over thirty high-impact publications in leading IEEE and international journals.

Professional Profile

ORCID 

Education

Liu earned his Ph.D. in Electrical Engineering from the College of Electrical and Information Engineering at Hunan University, ranking first in his cohort. During his doctoral studies, he undertook a joint Ph.D. training program at the State Key Laboratory of Power Systems at Tsinghua University, where he collaborated with renowned experts in the field. He previously obtained his Bachelor of Science degree in Electrical Engineering from Northwest University for Nationalities, graduating top of his class. His academic training encompassed advanced power system analysis, optimal operation and planning, power electronics, high-voltage testing, control theory, and microcomputer applications, forming the technical foundation for his later research innovations.

Experience

Following his doctoral work, Liu completed a postdoctoral fellowship at the School of Electrical and Electronic Engineering, Huazhong University of Science and Technology, focusing on advanced control methods and renewable energy integration under the mentorship of distinguished national talent program scholars. Since 2021, he has been an Associate Professor at Central South University, contributing to both academic leadership and the Hunan Provincial Key Laboratory of Power Electronics Equipment and Grid. His career also includes substantial participation in national and international research collaborations, including the National High Technology Research and Development Program (863 Program), Sino-US international cooperation projects, and key R&D initiatives funded by the energy industry.

Research Focus

Liu’s research addresses the challenges of integrating renewable energy sources into complex power and heat networks. He has developed high-resolution mixed-integer linear programming models to optimize integrated energy systems, enabling large-scale wind energy utilization. His work spans low-carbon energy systems, time-scale adaptive dispatch, unit commitment, and hybrid control strategies for multi-microgrid coordination. He has also contributed significantly to voltage support in active distribution networks, fault current limitation for wind farms and microgrids, renewable forecasting using deep learning, and advanced energy storage control. His studies often combine rigorous mathematical optimization, intelligent algorithms, and power electronics control techniques, ensuring practical applicability for real-world systems.

Awards & Honors

Liu has been widely recognized for his academic excellence and research impact. His distinctions include the Outstanding Doctoral Graduate Award of Hunan Province, the Third Prize of Science and Technology Progress from the China Electrotechnical Society, and multiple National Scholarships for both undergraduate and doctoral studies. He has also received top honors in competitions such as the National Undergraduate Electrical Engineering Mathematical Modeling Competition and the National College Students’ Mathematics Competition. His early achievements in software design and development earned him provincial prizes, reflecting his longstanding technical aptitude and innovation.

Publication Top Notes

Title: Frequency-Voltage Synergy Support Method based on Grid Strength for VSC-MTDC Integrated Distributed Offshore Wind Farms
Authors: Xubin Liu, Nanxing Huang, Yuan Liu, Liang Yuan, Mei Su, Canbing Li, Xinyu Chen, Guangming Zhu, Zhaoyang Dong
Journal: IEEE Transactions on Power Systems, 2025, 40(4): 3543-3562

Title: A Coordinated Voltage-Frequency Support Method for VSC-MTDC Integrated Offshore Wind Farms System
Authors: Xubin Liu, Wei Han, Yonglu Liu*, Zhangjie Liu, Mei Su, Canbing Li, Xin Zhang, Peng Wang
Journal: IEEE Transactions on Power Systems, 2024, 39(1): 1485-1502

Title: Fault Current Unified Calculation Method for Whole Process Fault Ride-Through of DFIG-Based Wind Farms
Authors: Xubin Liu, Zijian Zhang, Yonglu Liu, Zhangjie Liu*, Mei Su, Canbing Li*, Leijiao Ge, Xin Zhang, Peng Wang
Journal: IEEE Transactions on Smart Grid, 2024, 15(1): 485-503

Title: Active Fault Current Limitation for VSC-MTDC Integrated Offshore Wind Farms Participating in Frequency Regulation
Authors: Xubin Liu, Wei Han, Zhangjie Liu*, Hua Han, Mei Su, Canbing Li, Leijiao Ge, Xin Zhang, Peng Wang
Journal: IEEE Transactions on Sustainable Energy, 2024, 15(2): 773-788

Title: Fault Current Multi-Stages Calculation Method for DFIG-Based Wind Farms With Whole Fault Process Attributes Under Asymmetrical Grid Fault Conditions
Authors: Xubin Liu, Zijian Zhang, Yonglu Liu, Liang Yuan, Mei Su, Feng Zhou*, Canbing Li, Jianzhe Liu, Xin Zhang, Peng Wang
Journal: IEEE Transactions on Sustainable Energy, 2024, 15(4): 2361-2379

Title: Fault Current Hierarchical Limitation Strategy for Fault Ride-Through Scheme of Microgrid
Authors: Xubin Liu, Canbing Li, Mohammad Shahidehpour, Yunpeng Gao*, Bin Zhou, Yongjun Zhang, Jun Yi, Yijia Cao
Journal: IEEE Transactions on Smart Grid, 2019, 10(6): 6566-6579

Title: Fault Current Mitigation and Voltage Support Provision by Microgrids with Synchronous Generators
Authors: Xubin Liu, Canbing Li*, Mohammad Shahidehpour, Xinyu Chen, Jun Yi, Qiuwei Wu, Kai Sun, Bin Zhou
Journal: IEEE Transactions on Smart Grid, 2020, 11(4): 2816-2831

Title: Multi-Stage Voltage Support Optimization for Microgrids with Multiple Distributed Generation Units
Authors: Xubin Liu, Xinyu Chen, Canbing Li*, Mohammad Shahidehpour*, Kai Sun, Yijia Cao, Chen Chen, Bin Zhou
Journal: IEEE Transactions on Smart Grid, 2021, 12(1): 141-156

Title: Active Fault Current Limitation for Low-Voltage Ride-Through of Networked Microgrids
Authors: Xubin Liu, Xinyu Chen*, Mohammad Shahidehpour, Canbing Li*, Qiuwei Wu, Yuhang Wu, Jinyu Wen
Journal: IEEE Transactions on Power Delivery, 2022, 37(2): 980-992

Title: SoC Threshold Optimization for Battery Storage in Frequency Regulation Considering Uncertainty of SoC Measurement and Automatic Generation Control Fatigue Loss of Thermal Power System
Authors: Xubin Liu, Xin Xu, Qiuwei Wu*, Xia Chen, Jinyu Wen, Wei Wang, Kejie Zhang, Canbing Li, Xinyu Chen*
Journal: International Journal of Electrical Power and Energy Systems, 2022, 137: 107771

Conclusion

Through a blend of technical expertise, innovative research, and collaborative engagement, Xubin Liu has established himself as a leading figure in modern electrical engineering and renewable energy integration. His achievements reflect a career dedicated to solving pressing energy challenges while promoting sustainable, intelligent power systems. The breadth and depth of his contributions—from foundational modeling to practical control strategies—demonstrate his capability to influence both academic discourse and industrial practice. His recognition through awards, extensive publications, and leadership roles underscores his suitability for distinguished academic honors.