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/

Thomas Moldaschl | Power Electronics involves & Converters | Innovative Research Award

Innovative Research Award

Thomas Moldaschl
SAL Silicon Austria Labs GmbH

Thomas Moldaschl
Affiliation SAL Silicon Austria Labs GmbH
Country Austria
Scopus ID 23988186500
Documents 26
Citations 108
h-index 6
Subject Area Power Electronics involves & Converters
Event World Electrical Engineering Awards
Google Scholar bWBmN_cAAAAJ&hl=en&oi

Thomas Moldaschl, affiliated with SAL Silicon Austria Labs GmbH, Austria, has established an active research profile in power electronics, converter technologies, and advanced electrical energy systems. His scientific contributions emphasize efficient power conversion architectures, innovative semiconductor applications, and reliable electronic system integration for modern electrical infrastructures. His publication record, citation performance, and collaborative research activities demonstrate sustained academic engagement within electrical engineering and related interdisciplinary fields.[1]

Abstract

Thomas Moldaschl has contributed to research involving power electronics, converter technologies, semiconductor devices, and efficient electrical energy conversion systems. His publications explore practical engineering solutions that improve converter performance, system reliability, switching efficiency, thermal management, and power density while supporting modern industrial and renewable energy applications. Through collaboration with academic and industrial partners, his research advances innovative electrical engineering methodologies applicable to smart power systems and electronic hardware development. His scholarly output demonstrates technical consistency, measurable research visibility, and meaningful scientific engagement reflected through citations, peer-reviewed publications, and recognized contributions to electrical engineering research.[2]

Keywords

Power Electronics, Power Converters, Semiconductor Devices, Energy Conversion, Electrical Engineering, Switching Techniques, Wide Bandgap Devices, Industrial Electronics, Converter Efficiency, Smart Energy Systems

Introduction

Power electronics continues to transform electrical engineering by enabling efficient energy conversion across industrial automation, renewable energy integration, transportation, and intelligent power distribution. Continuous improvements in converter design and semiconductor technologies are essential for achieving higher efficiency, reliability, and sustainability. Researchers working in this field contribute directly to technological innovation by developing practical engineering solutions that address evolving energy requirements while maintaining system performance and operational safety.[3]

Research Profile

Thomas Moldaschl maintains an established research portfolio focused on power electronic converters, semiconductor integration, electrical system optimization, and advanced converter architectures. His publications demonstrate collaboration between industrial research laboratories and academic institutions, supporting technological innovation through experimentally validated engineering investigations that contribute to improved electrical system efficiency and practical industrial implementation.[1]

Research Contributions

His research contributions include investigations into converter topologies, switching behavior, thermal optimization, semiconductor applications, and high-efficiency electrical systems. These studies support the development of reliable electronic hardware suitable for renewable energy technologies, industrial automation, and intelligent power management while expanding scientific understanding of advanced electrical engineering methodologies through peer-reviewed scholarly communication.[4]

Publications

According to the available academic profile, Thomas Moldaschl has authored twenty-six indexed publications receiving more than one hundred citations while achieving an h-index of six. These metrics indicate consistent scholarly productivity and continuing research engagement within power electronics and converter engineering while supporting collaborative scientific advancement across multiple engineering disciplines.[1]

Research Impact

The research impact of Thomas Moldaschl is reflected through scholarly citations, collaborative publications, and contributions addressing practical engineering challenges in efficient electrical energy conversion. His work supports technological improvements that benefit industrial electronics, renewable energy integration, and high-performance converter systems while strengthening knowledge transfer between scientific research and industrial innovation.[2]

Award Suitability

The Innovative Research Award recognizes researchers demonstrating originality, scientific quality, and sustained academic contribution. Thomas Moldaschl’s publication record, citation profile, and research focus in power electronics and converter technologies align with these objectives through technically relevant investigations, collaborative scientific engagement, and measurable contributions supporting innovation within contemporary electrical engineering research.[5]

Conclusion

Thomas Moldaschl represents an active researcher whose work contributes to the advancement of power electronics and converter engineering through scientifically documented research and collaborative innovation. His publication metrics, technical expertise, and engineering investigations illustrate continued academic engagement, making his research profile consistent with the standards expected for recognition through the Innovative Research Award in electrical engineering.[1]

References

  1. Elsevier. (n.d.). Scopus author details: Thomas Moldaschl, Author ID 23988186500. Scopus.
    https://www.scopus.com/authid/detail.uri?authorId=23988186500
  2. Google Scholar. (n.d.). Thomas Moldaschl Citation Profile.
    https://scholar.google.com/citations?user=bWBmN_cAAAAJ&hl=en&oi=sra
  3. IEEE. (2023). Printed Wireless Battery-Free Sensor Tag for Health Monitoring of Polymer Composites.
    https://doi.org/10.1109/JFLEX.2023.3277802
  4. Springer Nature. Comparison of the parasitic impedances from the drain-source path of power transistor packages at up to 2 GHz.
    https://doi.org/10.1002/eng2.12489
  5. World Electrical Engineering Awards. Award Recognition Information.
    https://electricalaward.com/