Dr. Bin Liu | Simulation | Research Excellence Award

Dr. Bin Liu | Simulation | Research Excellence Award

Army Arms University of PLA | China

Dr. Bin Liu is a researcher specializing in power system security control, with a focus on advanced modeling and fault analysis in hybrid electric aircraft (HEA) DC power systems. His work introduces innovative transient modeling approaches that incorporate distributed energy sources and load control effects, improving accuracy in system analysis and protection strategies. His research contributes to reliable fault identification, localization, and enhanced resilience in modern electrified platforms. According to available metrics, his scholarly output includes Scopus-indexed publications with 3 documents, 2 citations, and an h-index of 1, alongside emerging visibility in Google Scholar, reflecting growing academic impact in power system engineering.

Citation Metrics (Scopus)

108

6

4

2

0

Citations
2

Documents 3

h-index
1

                 ■ Citations
Documents
h-index


View Scopus Profile     View ORCID Profile

Featured Publications

Dr. Gi-Hoon Kwon | Simulation | Research Excellence Award

Dr. Gi-Hoon Kwon | Simulation | Research Excellence Award

Researcher | Korea Institute of Industrial Technology | South Korea

Dr. Gi-Hoon Kwon is a materials engineering researcher specializing in advanced heat treatment processes, vacuum carburizing, and surface engineering of metallic systems. His work integrates simulation-driven optimization with experimental validation to enhance mechanical properties, energy efficiency, and process reliability in industrial applications. He has contributed to multiple technology development projects and patented innovations focused on energy-saving carburizing systems and improved material performance. His research spans carbon diffusion behavior, oxidation mechanisms, and microstructural evolution in alloy steels. His scholarly output demonstrates growing academic impact, with Scopus metrics indicating 26 citations across 9 documents and an h-index of 3, alongside emerging visibility on Google Scholar. His contributions highlight strong potential in advancing sustainable and high-performance materials engineering.

Citation Metrics (Scopus)

30

25

20

15

10

0

 

Citations
26

Documents
9

h-index
3

                Citations     Documents     h-index


View Scopus Profile

Featured Publications