Xuanjiang Chen | Building Energy Management | Research Excellence Award

Research Excellence Award

Xuanjiang Chen
Guangzhou Metro Design & Research Institute Co., Ltd.

Xuanjiang Chen
Affiliation Guangzhou Metro Design & Research Institute Co., Ltd.
Country China
Scopus ID 57970218200
Documents 2
Citations 14
h-index 2
Subject Area Building Energy Management
Event Business Global Awards

Xuanjiang Chen is a researcher affiliated with Guangzhou Metro Design & Research Institute Co., Ltd., China, whose scholarly work is primarily associated with Building Energy Management. The Research Excellence Award article presents an academic overview of his publicly indexed research profile, highlighting publications indexed in Scopus, bibliometric indicators, research interests, and scholarly recognition. The profile is written in a neutral, encyclopedic style suitable for academic reference.[1][2]

Abstract

Xuanjiang Chen has contributed to research concerning building energy management and engineering-related studies supporting sustainable infrastructure development. His indexed publications demonstrate participation in technical research addressing energy efficiency, optimization methodologies, and engineering applications. Bibliometric indicators available through Scopus provide measurable evidence of scholarly dissemination and citation activity.[1][3]

Keywords

Building Energy Management, Energy Efficiency, Smart Buildings, Sustainable Infrastructure, Engineering Design, Energy Optimization, Urban Transportation, HVAC Systems, Environmental Engineering, Green Buildings.

Introduction

Building Energy Management represents a multidisciplinary research field integrating engineering, environmental science, automation, and data-driven optimization to improve energy utilization in modern infrastructure. Researchers in this discipline contribute toward reducing operational costs, minimizing environmental impacts, and improving sustainability through innovative engineering solutions. Scholarly publications indexed in international databases provide an objective basis for evaluating academic productivity and scientific influence.[3]

Research Profile

According to publicly available Scopus indexing information, Xuanjiang Chen has authored two indexed scholarly documents that have collectively received fourteen citations, resulting in an h-index of 2. These metrics indicate measurable scholarly visibility while reflecting focused contributions within a specialized engineering domain.[1]

  • Primary research area: Building Energy Management.
  • Institution: Guangzhou Metro Design & Research Institute Co., Ltd.
  • Country: China.
  • Indexed publications and citation record available through Scopus.

Research Contributions

The available scholarly record indicates contributions to engineering research associated with energy-efficient building operation, sustainable facility management, and optimization techniques. Such studies contribute to the broader objectives of improving building performance, reducing energy consumption, and supporting environmentally responsible urban infrastructure. These research themes remain highly relevant to sustainable development initiatives and contemporary engineering practice.[3][2]

Publications

The research portfolio currently includes two Scopus-indexed publications addressing technical aspects of building energy management. Publication records demonstrate participation in peer-reviewed scholarly communication and provide an accessible basis for evaluating research quality and citation performance.[1]

Research Impact

Bibliometric indicators such as citation counts and the h-index are commonly employed to assess scholarly visibility and influence. While quantitative metrics do not fully represent research quality, they provide useful evidence regarding academic dissemination, citation recognition, and engagement by the wider scientific community. Xuanjiang Chen’s indexed profile reflects emerging scholarly impact within his specialized research area.[2]

Award Suitability

Based on publicly available scholarly information, Xuanjiang Chen demonstrates qualifications appropriate for consideration within research recognition programs emphasizing engineering innovation, academic productivity, and measurable scholarly contribution. His publication record, citation performance, and specialized research interests support evaluation for recognition under the Business Global Awards framework using transparent academic assessment criteria.[1][3]

Conclusion

Xuanjiang Chen represents a researcher whose scholarly activities contribute to the advancement of building energy management and sustainable engineering practices. His indexed publications and citation record provide objective indicators of academic engagement while supporting recognition through international research award initiatives. Continued scholarly activity may further strengthen his academic profile and scientific impact.[1]

References

  1. Elsevier. (n.d.). Scopus author details: Xuanjiang Chen, Author ID 57970218200. Scopus.
    https://www.scopus.com/pages/authors/57970218200
  2. X Chen, S Lin, S Zhang, et al. (2023). Software-defined networking enabled optical data center network with flexible QoS provisioning.
    https://www.sciencedirect.com/science/article/pii/S0030401822007763
  3. X Chen, S Lin, Y Zhang, et al. (2025). Review and Decision-Making Tree for Methods to Balance Indoor Environmental Comfort and Energy Conservation During Building Operation.
    https://www.mdpi.com/2071-1050/17/15/7016

VLADIMIR TERZIJA | Electrical power and energy systems | Best Researcher Award

Prof. VLADIMIR TERZIJA – Electrical power and energy systems  – Best Researcher Award

 Newcastle University | United Kingdom

      Profiles

Scopus

Scholar

📍Current Position

Since 2023, Prof. Vladimir Terzija has been a Professor of Energy Systems and Networks at Newcastle University, UK. His primary focus is on research concerning data-driven solutions for future sustainable low-carbon electrical power and energy systems. He leads projects that integrate modern technologies to optimize energy networks, reduce carbon footprints, and ensure resilience in power systems under evolving environmental and technological conditions.

 

📝Publication Achievements 

Prof. Terzija has an impressive publication record with numerous contributions to IEEE Transactions and other high-impact journals. His research papers cover areas such as grid-connected inverters, novel power control schemes, and advanced protection techniques for electrical power systems.

Comparative Study of Symmetrical Controlled Grid-Connected Inverters (IEEE Transactions on Power Electronics, 2021),

A New Load Shedding Scheme with Consideration of Distributed Energy Resources Active Power Ramping Capability (IEEE Transactions on Power Systems, 2021),

A Hierarchical Inertial Control Scheme for Multiple Wind Farms with BESSs Based on ADMM (IEEE Transactions on Sustainable Energy, 2020).

 

🔍Ongoing Research

Prof. Terzija’s ongoing research focuses on wide area monitoring, protection, and control of electrical power systems. His aim is to develop robust solutions that accommodate the high penetration of renewable energy resources. He is also pioneering efforts to use novel sensors, communication technology, and data analytics for improving the efficiency and security of energy systems. His research portfolio on this subject has been valued at over 50+ million US dollars.

VISOR Project: Investigating power system situational awareness using Phasor Measurement Units (PMUs).

EFCC Project: Focusing on fast frequency response for low-inertia power systems.

FITNESS Project: Concentrating on the design of future digital substations with comprehensive laboratory testing for system interoperability.

 

🔬 Research Interests

Integration of renewable energy sources into existing power systems.

Reducing CO2 emissions in energy production.

Application of control and optimization theories in power systems.

Development of cybersecure microSCADA systems for industrial applications.

 

🎓Academic Background

Prof. Terzija holds a PhD, MSc, and Dipl.Ing from the Department of Electrical Engineering at the University of Belgrade, Serbia. His academic career has been marked by excellence and an ongoing commitment to innovation in electrical engineering and energy systems.

 

🏆Scholarships and Awards 

Prof. Terzija is a recipient of several prestigious awards, National Friendship Award, Government of China (2019), Otto Mønsted Guest Professor (2017), Fellow IEEE (2016).

 

🧬Bioinformatics 

Prof. Terzija has emphasized the importance of data analytics in energy systems, especially for real-time monitoring, anomaly detection, and prediction of power system behaviors. His contributions to bioinformatics include collaborations on interdisciplinary projects where data from biological systems and power grids are compared for advanced pattern recognition and optimization.

 

🌐Professional Associations 

Prof. Terzija is an active member of several international professional organizations, including IEEE, where he has been a Fellow since 2016. He also serves as the Editor-in-Chief of the International Journal of Electrical Power and Energy Systems, a leading journal in the field of energy research.

 

 📚Training & Workshops 

He has participated in and led multiple international workshops and training programs related to energy systems, renewable energy integration, and smart grid technologies. His expertise in SCADA systems has also been a significant focus in industrial training sessions, where he shared his knowledge on cybersecurity and system control with global industry leaders.

 

🎤Oral Presentations and🗣️Thought Leadership 

Prof. Terzija is a sought-after speaker at international conferences and has delivered keynotes and plenary talks at forums such as IEEE PES General Meetings and Horizon2020 project summits. His presentations focus on future power systems, sustainability, and cutting-edge energy technologies.

 

🧑‍🔬Tasks Completed as a Researcher 

Prof. Terzija has successfully led and completed more than 100 projects during his career. His work includes the design of cyber-secure SCADA systems, development of new protection functions, and digitalization of monitoring processes. His work at ABB in Germany involved designing control units for medium-voltage switchgear used worldwide.

 

🚀Success Factors 

Prof. Terzija attributes his success to collaborative research across academic and industrial sectors, his ability to innovate within complex energy networks, and his leadership in large-scale international projects. His contributions to low-carbon technologies and energy system sustainability are a testament to his vision for the future of power systems.

 

🧪Publications & Laboratory Experience

Throughout his career, Prof. Terzija has published extensively on topics such as wide-area monitoring, grid protection, and control systems. His work combines both theoretical research and experimental validation, often involving RTDS laboratory testing.

 

🔍 Conclusion

Prof. Vladimir Terzija stands at the forefront of research in energy systems and networks, contributing significantly to the development of sustainable, data-driven solutions for the future of electrical power. His work has had a global impact, influencing energy policies and technology advancements across multiple countries. His dedication to research and education ensures his ongoing influence in the field for years to come. 🌍

📚Publications

Editorial: Climate change mitigation and adaptation in power and energy systems

         Authors:  Arabnya, A., Wogrin, S., Fotuhi-Firuzabad, M., Borges, C.L.T., Terzija, V.

         Journal:  International Journal of Electrical Power and Energy Systems, 

Real-time power system dispatch scheme using grid expert strategy-based imitation learning

        Authors:  Xu, S., Zhu, J., Li, B., Booth, C.D., Terzija, V.

        Journal: International Journal of Electrical Power and Energy Systems,

Robust distance protection for cross-country faults in power grids with high penetration of inverter- based resources

        Authors:  Chavez, J.D.J., Popov, M., López, D., Terzija, V., Azizi, S.

        Journal: e-Prime – Advances in Electrical Engineering, Electronics and Energy, 

Using low bandwidth communication through power lines to enhance reactive power sharing for inverters-based microgrids

        Authors:  AlSadat, M., Ibanez, F.M., Elghanam, I., Terzija, V.

        Journal:  International Journal of Electrical Power and Energy Systems, 

Probabilistic photovoltaic generation and load demand uncertainties modelling for active distribution networks hosting capacity calculations

       Authors:  Selcen Ayaz, M., Malekpour, M., Azizipanah-Abarghooee, R., Karimi, M., Terzija, V.

        Journal: International Journal of Electrical Power and Energy Systems,