Guangyao Li | Engineering | Innovative Research Award

Innovative Research Award

Guangyao Li
Harbin Institute of Technology, China

Guangyao Li
Affiliation Harbin Institute of Technology
Country China
Scopus ID 58371333200
Documents 38
Citations 244
h-index 9
Subject Area Engineering
Event International Forensic Scientist Awards
ORCID 0000-0003-3343-1889

Guangyao Li is an engineering researcher affiliated with Harbin Institute of Technology whose documented research record includes work on wireless power transfer (WPT), inductive power transfer, compensation networks, power electronics, and wireless charging systems. The available bibliographic record lists 38 documents, 244 citations, and an h-index of 9. His recent publications address practical challenges including frequency switching, compensation topology, circulating-current suppression, output regulation, misalignment tolerance, and wireless charging for unmanned aerial vehicles.

Abstract

Guangyao Li’s research profile is centered on engineering problems associated with wireless and inductive power transfer. Recent publications demonstrate attention to compensation topology design, controllable power delivery, system stability, and operating conditions encountered in practical WPT applications. His 2026 work includes a dual-frequency three-coil topology with constant-current and constant-voltage outputs and zero-voltage switching, as well as an inductive power transfer system designed for misalignment-tolerant UAV charging. Additional research examines circulating currents in segmented dynamic wireless power transfer systems and bidirectional inductive power transfer control.

Keywords

  • Wireless power transfer
  • Inductive power transfer
  • Power electronics
  • Compensation networks
  • Wireless charging

Introduction

Wireless power transfer research seeks to improve the efficiency, controllability, reliability, and application range of contactless energy-transfer systems. Within this field, compensation networks and control strategies strongly influence operating frequency, power regulation, switching conditions, and tolerance to changes in coupling. Li’s recent publications address these engineering considerations through circuit topologies and control approaches reported in peer-reviewed journals.

Research Profile

The documented profile comprises 38 Scopus-indexed documents, 244 citations, and an h-index of 9. These bibliometric indicators provide a quantitative description of the indexed publication record and should be interpreted in relation to field, publication age, database coverage, and citation practices. [1] His research activity is particularly associated with power-transfer systems and engineering methods for regulating electrical energy delivered through inductive coupling.

Research Contributions

Recent work describes a dual-frequency switchable LCC-S-S and S-S-S compensated three-coil topology supporting constant-current and constant-voltage outputs with zero-voltage switching. [2] Another study proposes an L-S/N inductive power-transfer system using a lightweight receiver, primary-side tuning, and constant-current control for UAV wireless charging under misalignment conditions. [3] Further research investigates induced circulating currents in segmented dynamic WPT systems and output regulation in bidirectional inductive power transfer. [4] [5]

Publications

  • A Dual-Frequency Switchable LCC-S-S and S-S-S Compensated Three-Coil Topology with CC/CV Outputs and ZVS Operation for WPT Applications. Electronics, 2026. [2]
  • An L-S/N IPT System with a Lightweight Receiver and Primary-Side Tuning and Constant-Current Control for Misalignment-Tolerant UAV Wireless Charging. Electronics, 2026. [3]
  • Analysis and Suppression of Induced Circulating Currents in Segmented DWPT Systems With a Primary-Side LCC Compensation Network. IEEE Transactions on Power Electronics, 2026. [4]
  • Enhancing Output Stability in Bidirectional Inductive Power Transfer Using Switching Controlled Capacitors and Dual-Phase-Shift Control. IEEE Transactions on Industry Applications, 2026. [5]

Research Impact

The available citation record indicates measurable scholarly visibility, with 244 citations and an h-index of 9 in the supplied Scopus profile data. [1] The publication themes also show continuity around practical WPT engineering, including power regulation, switching operation, misalignment tolerance, dynamic charging, and bidirectional energy transfer. The significance of individual contributions should be assessed through their technical results, independent citations, and subsequent adoption rather than bibliometric indicators alone.

Award Suitability

For the Innovative Research Award, the documented research record provides evidence of recent work addressing technically specific challenges in wireless and inductive power-transfer systems. The publications cover circuit topology development, control methods, switching behavior, output stability, and application-oriented wireless charging. These documented areas can be considered in an award evaluation alongside the complete research record, independent scholarly impact, and the stated criteria of the International Forensic Scientist Awards.

Conclusion

Guangyao Li’s documented research profile combines indexed scholarly output with recent publications focused on wireless power-transfer technologies and associated power-electronic control challenges. His 2026 publications provide identifiable examples of work on compensation structures, switching control, system stability, and misalignment-tolerant charging, establishing a clear research focus within engineering.

References

  1. Elsevier. (n.d.). Scopus author details: Guangyao Li, Author ID 58371333200. Scopus.
    https://www.scopus.com/authid/detail.uri?authorId=58371333200
  2. Li, Guangyao, et al. (2026). A Dual-Frequency Switchable LCC-S-S and S-S-S Compensated Three-Coil Topology with CC/CV Outputs and ZVS Operation for WPT Applications. Electronics.
    https://doi.org/10.3390/electronics15184285
  3. Li, Guangyao, et al. (2026). An L-S/N IPT System with a Lightweight Receiver and Primary-Side Tuning and Constant-Current Control for Misalignment-Tolerant UAV Wireless Charging. Electronics.
    https://doi.org/10.3390/electronics15184245
  4. Li, Guangyao, et al. (2026). Analysis and Suppression of Induced Circulating Currents in Segmented DWPT Systems With a Primary-Side LCC Compensation Network. IEEE Transactions on Power Electronics.
    https://doi.org/10.1109/TPEL.2025.3650608
  5. Li, Guangyao, et al. (2026). Enhancing Output Stability in Bidirectional Inductive Power Transfer Using Switching Controlled Capacitors and Dual-Phase-Shift Control. IEEE Transactions on Industry Applications.
    https://doi.org/10.1109/TIA.2025.3603528

Guangzhen Si | Engineering | Innovative Research Award

Innovative Research Award

Guangzhen Si
Affiliation Zhejiang University of Technology
Country China
Scopus ID 57192688905
Documents 17
Citations 359
h-index 6
Subject Area Engineering
Event International Forensic Scientist Awards

Guangzhen Si
Zhejiang University of Technology, China

Guangzhen Si is a researcher affiliated with Zhejiang University of Technology, China, whose documented scholarly profile is associated with engineering research. The available bibliographic record lists 17 documents, 359 citations, and an h-index of 6 in Scopus. [1] These indicators provide a quantitative view of the researcher’s indexed publication and citation activity.

Abstract

This academic recognition profile presents the documented research record of Guangzhen Si in engineering. The available Scopus information identifies 17 indexed documents, 359 citations, and an h-index of 6. [1] A 2026 conference paper further records Si as a co-author of research on multi-scale dynamic adaptive attention mechanisms for cross-domain specific emitter identification, indicating engagement with computational and signal-processing research themes. [2]

Keywords

Engineering; adaptive attention mechanisms; specific emitter identification; cross-domain learning; computational research; research impact; bibliometrics.

Introduction

Guangzhen Si is affiliated with Zhejiang University of Technology and is represented in the Scopus database under author ID 57192688905. [1] The available record places the research profile within Engineering and provides bibliometric indicators that can be used to describe indexed scholarly activity.

Research Profile

The documented research profile combines engineering-oriented scholarly output with work involving computational methods. The reported Scopus indicators of 17 documents and 359 citations, together with an h-index of 6, provide measurable evidence of indexed research activity. [1]

Research Contributions

A recorded 2026 conference contribution titled MAAB: Multi-scale Dynamic Adaptive Attention Mechanisms for Cross-Domain Specific Emitter Identification lists Guangzhen Si among its authors. The work addresses adaptive attention mechanisms in the context of cross-domain specific emitter identification, illustrating an application of machine-learning approaches to an engineering research problem. [2]

Publications

The documented publication record includes the following 2026 conference paper:

  • MAAB: Multi-scale Dynamic Adaptive Attention Mechanisms for Cross-Domain Specific Emitter Identification. H. Zou, M. Wang, J. Wang, G. Si. Lecture Notes of the Institute for Computer Sciences, Social-Informatics and Telecommunications Engineering (LNICST), 2026. [2]

Research Impact

The Scopus record reports 359 citations across 17 documents, with an h-index of 6. [1] These figures describe citation activity within the indexed database and should be interpreted in relation to publication year, field-specific citation practices, and database coverage.

Award Suitability

For the International Forensic Scientist Awards, the available record provides identifiable evidence of engineering research activity, indexed publications, citation impact, and a recent contribution involving adaptive computational methods. [1] [2] Final award assessment should consider the complete nomination materials, verified publication record, originality, and the criteria established by the award organizers.

Conclusion

Guangzhen Si’s documented scholarly profile reflects engineering research activity supported by indexed publication and citation indicators. The 2026 conference contribution on adaptive attention mechanisms provides a specific example of current research involvement, while the reported Scopus metrics offer a quantitative description of the broader indexed record. [1] [2]

References

  1. Elsevier. (n.d.). Scopus author details: Guangzhen Si, Author ID 57192688905. Scopus.
    https://www.scopus.com/authid/detail.uri?authorId=57192688905
  2. Zou, H., Wang, M., Wang, J., & Si, G. (2026). MAAB: Multi-scale Dynamic Adaptive Attention Mechanisms for Cross-Domain Specific Emitter Identification. Lecture Notes of the Institute for Computer Sciences, Social-Informatics and Telecommunications Engineering (LNICST).
  3. Zhejiang University of Technology. Institutional research and academic information concerning engineering research activities.
  4. International Forensic Scientist Awards. Award information and nomination resources.
    forensicscientist.org