Bernardine Chidozie | Supply Chain | Innovative Research Award

Innovative Research Award

Bernardine Chidozie
Instituto Politécnico de Castelo Branco, Portugal

Bernardine Chidozie
Affiliation Instituto Politécnico de Castelo Branco
Country Portugal
Scopus ID 58492227100
Documents 8
Citations 70
h-index 4
Subject Area Supply Chain
Event Business Global Awards
ORCID 0000-0003-4137-2970

Bernardine Chidozie is an industrial engineer, academic, and researcher whose work spans sustainable supply chains, digital transformation, biomass logistics, simulation modeling, decision-support systems, and engineering management. The Innovative Research Award recognizes researchers whose scholarly contributions demonstrate methodological rigor, interdisciplinary relevance, and measurable influence within their respective fields. Her research activities have focused on developing practical and data-driven approaches to improve sustainability, operational efficiency, and resilience in complex supply chain networks.[1]

Abstract

Bernardine Chidozie has developed a research portfolio centered on sustainable supply chain management, digital transformation, logistics optimization, industrial engineering, and simulation-based decision support. Her academic work integrates analytical modeling, digital technologies, and sustainability frameworks to address contemporary challenges in biomass logistics and supply chain resilience. Through publications, conference presentations, academic teaching, and collaborative research activities, she has contributed to advancing evidence-based approaches for improving operational efficiency and sustainability performance in industrial systems.[2]

Keywords

Supply Chain Management, Sustainable Logistics, Biomass Supply Chains, Industrial Engineering, Simulation Modeling, Digital Transformation, Industry 5.0, Decision Support Systems, Circular Economy, Operational Optimization.

Introduction

The growing complexity of modern supply chains has increased the need for advanced analytical tools capable of supporting sustainable and resilient operational decisions. Researchers working at the intersection of engineering, logistics, and digital transformation play a critical role in addressing these challenges. Bernardine Chigozie Chidozie’s work reflects this interdisciplinary approach by combining simulation techniques, sustainability principles, and digital technologies to improve organizational performance and supply chain effectiveness.[3]

Research Profile

Bernardine Chidozie earned a PhD in Industrial Engineering and Management from the University of Aveiro, Portugal, where her doctoral research focused on simulation and digital mapping approaches for residual agroforestry biomass supply chains. She previously completed a Master’s degree in Electronic and Computer Engineering at Nnamdi Azikiwe University, Nigeria, concentrating on intelligent charge control systems using fuzzy logic and PID controllers. Her multidisciplinary background combines expertise in engineering, optimization, control systems, logistics, and sustainability-oriented industrial management.[1]

  • Industrial Engineering and Management
  • Supply Chain Sustainability
  • Simulation Modeling
  • Digital Transformation and Industry 5.0
  • Circular Economy Applications
  • Decision Support Systems

Research Contributions

Bernardine Chidozie’s research focuses on sustainable biomass supply chains and the application of simulation-based methodologies to evaluate operational performance under different environmental and economic conditions. Her studies explore how digital tools can support decision-making and improve sustainability outcomes across logistics networks.[4]

Publications

  • Highlighting Sustainability Criteria in Residual Biomass Supply Chains: A Dynamic Simulation Approach (2024) — DOI: 10.3390/su16229709
  • Development of a Residual Biomass Supply Chain Simulation Model Using AnyLogistix: A Methodical Approach (2024) — DOI: 10.3390/logistics8040107
  • The Importance of Digital Transformation (5.0) in Supply Chain Optimization: An Empirical Study (2024) — DOI: 10.30657/pea.2024.30.12
  • Residual Agroforestry Biomass Supply Chain Simulation Insights and Directions: A Systematic Literature Review (2023) — DOI: 10.3390/su15139992
  • Development of an Intelligent Charge Control System Using Fuzzy Logic and PID Controllers for Nickel-Hydrogen Satellite Battery (2019).

Research Impact

Bernardine Chidozie contributes to the advancement of sustainable engineering practices and evidence-based logistics management. Her work provides practical frameworks for evaluating biomass supply chains, identifying sustainability indicators, and improving operational decision-making through simulation technologies. The integration of digital tools and sustainability metrics within her studies aligns with contemporary priorities in industrial engineering and supply chain management.[4][5]

Award Suitability

Bernardine Chidozie demonstrates several characteristics commonly associated with recipients of innovation-oriented academic distinctions. Her interdisciplinary research integrates engineering principles, digital transformation strategies, simulation methodologies, and sustainability objectives. The practical orientation of her studies, combined with scholarly publication output and active participation in international academic forums, reflects a commitment to advancing knowledge while supporting real-world applications.[2]

Conclusion

Through Bernardine Chidozie contributions to sustainable supply chain research, simulation-based logistics analysis, and digital transformation studies, Bernardine Chigozie Chidozie has established a research profile characterized by interdisciplinary engagement and practical relevance. Her academic activities, publications, and research achievements support recognition within the framework of the Innovative Research Award and illustrate ongoing contributions to the advancement of industrial engineering and sustainable supply chain management.[5]

References

  1. Ciência Vitae. (2026). Curriculum Vitae of Bernardine Chigozie Chidozie. Academic Profile and Professional Biography.
    https://www.cienciavitae.pt//BC13-A08C-D13B
  2. Elsevier. (n.d.). Scopus author details: Bernardine Chigozie Chidozie, Author ID 58492227100. Scopus.
    https://www.scopus.com/authid/detail.uri?authorId=58492227100
  3. Chidozie, B., Ramos, A., Ferreira, J., & Ferreira, L. (2024). Impacts of Simulation and Digital Tools on Supply Chain in Industry 4.0.
    https://doi.org/10.1007/978-3-031-54664-8_43
  4. Chidozie, B., Ramos, A., Vasconcelos, J., Ferreira, L., & Gomes, R. (2024). Highlighting Sustainability Criteria in Residual Biomass Supply Chains: A Dynamic Simulation Approach.
    https://doi.org/10.3390/su16229709
  5. Chidozie, B., Ramos, A., Ferreira, J., & Ferreira, L. (2023). Analytical and Simulation Models as Decision Support Tools for Supply Chain Optimization-An Empirical Study.
    https://link.springer.com/chapter/10.1007/978-3-031-54671-6_15

Li Chen | Organizational Resilience | Innovative Research Award

Innovative Research Award

Li Chen
Universiti Sains Malaysia (USM), Malaysia

Li Chen
Affiliation Universiti Sains Malaysia (USM)
Country Malaysia
Documents 3
Subject Area Organizational Resilience
Event Business Global Awards
ORCID 0009-0001-9880-3084

Li Chen, affiliated with Universiti Sains Malaysia (USM), is a researcher and lecturer whose academic activities focus on supply chain management, logistics systems, risk management, and organizational resilience. Through scholarly publications, teaching contributions, textbook development, and applied research, Chen has established a multidisciplinary profile that bridges logistics operations with contemporary resilience-oriented management frameworks. Her research reflects growing attention to supply chain risk mitigation, blockchain-enabled governance, low-carbon behavior, and resource reconfiguration strategies in organizational contexts.[1][2]

Abstract

Li Chen’s scholarly profile in the areas of supply chain management, logistics systems, organizational resilience, and risk governance. Her work integrates operational logistics research with emerging themes such as blockchain-enabled supply chains, low-carbon behavior, and resilience-oriented organizational transformation. Through journal publications, conference participation, textbook contributions, and practical engagement in logistics education, Chen has contributed to advancing knowledge relevant to contemporary supply chain challenges and organizational adaptability.[2][3]

Keywords

Organizational Resilience; Supply Chain Risk Management; Logistics Management; Resource Reconfiguration; Blockchain Technology; Sustainable Supply Chains; Low-Carbon Behavior; Supply Chain Governance; Operations Management; Business Resilience.

Introduction

The growing complexity of global supply networks has elevated the importance of resilience, risk management, and adaptive organizational capabilities. Researchers in logistics and supply chain management increasingly focus on understanding how organizations can respond to disruptions while maintaining operational continuity. Within this context, Li Chen’s academic work explores the intersection of supply chain governance, technological innovation, and organizational resilience. Her studies contribute to discussions regarding risk mitigation mechanisms, logistics optimization, and sustainable operational practices.[2][4]

Research Profile

Li Chen serves as a lecturer and doctoral researcher at Universiti Sains Malaysia. Her academic background includes logistics management and supply chain studies, complemented by professional experience in logistics education and industry supervision. Her research trajectory has evolved from warehouse operations and logistics management toward broader investigations of supply chain resilience, sustainability, and strategic resource deployment. This progression reflects an interdisciplinary perspective that combines operational efficiency with long-term organizational adaptability.[1][3]

Research Contributions

  • Investigation of warehouse allocation strategies and material preparation efficiency in manufacturing environments.
  • Research on wireless PDA implementation for warehouse management and logistics digitization.
  • Development of logistics distribution path optimization approaches using support vector machine methodologies.

Collectively, these contributions demonstrate an integrated research agenda focused on improving organizational preparedness, supply chain visibility, and adaptive capabilities under uncertain operating conditions.[2][5]

Publications

  • Chen, L. (2020). Impact of warehouse component allocation on production material preparation in manufacturing enterprises.
  • Chen, L. (2019). Application of wireless PDA in warehouse management.
  • Chen, L. (2022). Logistics distribution path optimization using support vector machine algorithm under different constraints.
  • Wei, B., Shaharudin, M.S., Chen, L., & Gui, A. (2024). Mapping the Path to Low-Carbon Behavior: A Systematic Review of Trends, Gaps, and Future Directions.

Research Impact

Li Chen’s research lies in its practical orientation toward contemporary organizational challenges. Her studies support evidence-based approaches for managing supply chain disruptions, improving logistics performance, and strengthening resilience capabilities. The integration of digital technologies, sustainability considerations, and risk governance mechanisms reflects current priorities within operations and supply chain scholarship. Her educational contributions, including textbook development and student mentorship, further extend the impact of her work beyond academic publication outputs.[3][4]

Award Suitability

Li Chen’s profile aligns with the objectives of the Innovative Research Award through her interdisciplinary contributions to organizational resilience and supply chain management. Her publication portfolio demonstrates active engagement with emerging themes such as blockchain applications, resilience-building strategies, sustainability, and risk management. The combination of scholarly output, educational leadership, applied logistics expertise, and ongoing doctoral research illustrates a commitment to advancing both academic understanding and professional practice within the field.[2][5]

Conclusion

Li Chen represents an emerging scholar whose work contributes to understanding the dynamics of supply chain resilience and organizational adaptability. Through research addressing logistics optimization, technological innovation, sustainability, and risk governance, she has established a foundation for continued scholarly development. Her research trajectory supports ongoing discussions regarding resilient organizations and effective supply chain management in rapidly changing business environments.[4][5]

References

  1. ORCID. (n.d.). ORCID Record: Li Chen (0009-0001-9880-3084).
    https://orcid.org/0009-0001-9880-3084
  2. Chen, L., Shaharudin, M.S., & Liu, J. (2026). The Impact of Supply Chain Risk Management on Organizational Resilience: The Mediating Role of Resource Reconfiguration. Sustainability.
    https://doi.org/10.3390/su18083654
  3. Chen, L., Shaharudin, M.S., Wei, B., et al. (2025). Supply Chain Risk Management with Blockchain: A Literature Review and Future Research Directions.
    https://doi.org/10.6007/IJAREMS/v14-i3/26086
  4. Wei, B., Shaharudin, M.S., Chen, L., & Gui, A. (2024). Mapping the Path to Low-Carbon Behavior: A Systematic Review of Trends, Gaps, and Future Directions. Sustainability.
    https://www.mdpi.com/2071-1050/16/21/9343
  5. SciProfile author details: Li Chen, emerging researcher profile in Supply Chain Management and Organizational Resilience.
    https://sciprofiles.com/profile/3964220

Mehmet Aga | Strategic Management | Best Researcher Award

Prof. Mehmet Aga | Strategic Management | Best Researcher Award 

Professor | European University of Lefke | Turkey 

Prof. Mehmet Aga is a distinguished scholar in the field of business administration, accounting, and finance, with a strong focus on sustainability, corporate governance, and the economic dimensions of environmental policy. His research has made significant contributions to understanding the interplay between globalization, renewable energy, and environmental sustainability across both developed and emerging economies. He has published extensively in high-impact international journals indexed in SCI, SSCI, and related databases, reflecting his deep engagement with issues at the intersection of energy economics, corporate management, and sustainable development. His scholarly works explore diverse areas such as the asymmetric effects of economic globalization on renewable energy, the role of natural gas and nuclear energy in environmental sustainability, and the implications of corporate governance on financial reporting quality. Aga’s publications in prominent journals such as Sustainability, Scientific Reports, Energies, Heliyon, Environmental Science and Pollution Research, and Science of the Total Environment demonstrate his commitment to interdisciplinary research and policy-relevant analysis. His studies frequently employ advanced econometric and analytical techniques, including nonlinear ARDL models and wavelet coherence approaches, to uncover nuanced relationships within complex global systems. With 33 scholarly documents, an h-index of 18, and a citation count exceeding 1,404 from more than 1,286 citing documents, Mehmet Aga’s academic impact is both significant and far-reaching. His research has informed academic discourse and offered valuable guidance for policymakers, businesses, and sustainability advocates seeking to balance economic growth with environmental responsibility. Through his continuous engagement in international collaborations and interdisciplinary studies, Aga remains a respected voice in advancing global discussions on sustainable economic systems and the evolving role of governance in shaping a greener future.

Featured Publications : 

Sezenler, C., & Ağa, M. (2025). Managerial perspectives on the use of environmentally friendly energy in accommodation facilities in Northern Cyprus. Sustainability (MDPI).

Awosusi, A. A., Rjoub, H., Ağa, M., & Onyenegecha, I. P. (2024). An insight into the asymmetric effect of economic globalization on renewable energy in Australia: Evidence from nonlinear ARDL approach and wavelet coherence. Energy and Environment, 35(7), 3600–3624.

Adebayo, T. S., Ozturk, I., Ağa, M., Uhunamure, S. E., Kirikkaleli, D., & Shale, K. (2023). Role of natural gas and nuclear energy consumption in fostering environmental sustainability in India. Scientific Reports, 13(1), 11030.

Ojekemi, O. S., Ağa, M., & Magazzino, C. (2023). Towards achieving sustainability in the BRICS economies: The role of renewable energy consumption and economic risk. Energies, 16(14), 5287.

Ojekemi, O. S., & Ağa, M. (2023). In the era of globalization, can renewable energy and eco-innovation be viable for environmental sustainability in BRICS economies? Environmental Science and Pollution Research, 1–14.

Reza Khalili | Strategic Decision-Making | Best Researcher Award

Mr. Reza Khalili | Strategic Decision-Making | Best Researcher Award 

Research Assistant at Stony Brook University | United States 

Mr. Reza Khalili is a graduate student in Electrical and Computer Engineering at Stony Brook University, where he is pursuing a Ph.D. in Electrical Engineering with a strong academic record. His educational background also includes a master’s degree in Electrical Engineering from Amirkabir University of Technology and a bachelor’s degree in Electrical Engineering from the University of Isfahan. His research primarily focuses on power systems optimization, renewable energy integration, electricity markets, and the application of advanced computational and machine learning methods in energy systems. His scholarly impact is reflected in 81 citations across 78 documents, with 6 publications and an h-index of 4. Khalili has contributed to several peer-reviewed journals and conferences, publishing impactful works on topics such as robust multi-objective optimization for electricity markets, socio-economic energy hub design, peer-to-peer energy trading, and uncertainty management in renewable energy integration. His co-authored works have appeared in respected journals including Applied Energy, Journal of Energy Storage, and Energy & Buildings, and he has contributed a book chapter published by Taylor & Francis. His conference papers include research on security-constrained optimal power flow and distribution network resilience, one of which was recognized as a best paper finalist at IEEE SmartGridComm. In his academic career, Khalili has gained valuable research experience as a graduate research assistant, working on advanced optimization techniques, contingency prediction in power systems, and uncertainty quantification methods.

Profiles : Scopus | ORCID | Google Scholar 

Featured Publications: 

Khalili, R., Khaledi, A., Marzband, M., Nematollahi, A. F., Vahidi, B., & Siano, P. (2023). Robust multi-objective optimization for the Iranian electricity market considering green hydrogen and analyzing the performance of different demand response programs. Applied Energy, 334, 120737.

Darvishi, A., Ranjbar, B., Gharibi, R., Khalili, R., & Dashti, R. (2024). Multi-objective optimization of a socio-economic energy hub with demand response program and considering customer satisfaction. Journal of Energy Storage, 100, 113624.

Gharibi, R., Khalili, R., Vahidi, B., Nematollahi, A. F., Dashti, R., & Marzband, M. (2025). Enhancing energy hub performance: A comprehensive model for efficient integration of hydrogen energy and renewable sources with advanced uncertainty management strategies. Journal of Energy Storage, 107, 114948.

Gharibi, H., Gharibi, R., Khalili, R., Dashti, R., Marzband, M., & Rawa, M. (2025). Optimizing multi-objective peer-to-peer energy trading in green homes: Robust strategies to address non-probabilistic uncertainty using IGDT with integrated demand response. Energy and Buildings, 116435.

Gharibi, R., Vahidi, B., Dashti, R., & Khalili, R. (n.d.). From electrons to solutions: Power-to-X strategies for energy systems integration. In Power-to-X in regional energy systems (pp. 201–227). Taylor & Francis.

Champika Liyanage | Strategy Implementation | Best Paper Award-3709

Prof. Champika Liyanage | Strategy Implementation | Best Paper Award

Prof. Champika Liyanage, University of Central Lancashire, United Kingdom

Dr. Champika Liyanage is a highly accomplished academic and research leader in the field of Facilities and Construction Management. She currently serves as a Reader at the School of Engineering, University of Central Lancashire (UCLan), UK. With over two decades of experience in academia, international research, and project leadership, she has significantly advanced knowledge in public-private partnerships, disaster resilience, and sustainable infrastructure. She is a Co-Director of the Centre for Energy, Sustainable Development and Resilience (CESDR) and a leading figure in UCLan’s REF submission efforts, exemplifying her academic and institutional leadership. 💡

🧑‍🔬 Profile

Orcid

🎓 Education

Dr. Liyanage holds a PhD in Facilities Management from Glasgow Caledonian University (2006). She earned her B.Sc. (Hons) in Quantity Surveying from the University of Moratuwa, Sri Lanka in 2001, graduating with First Class Honours. To further enhance her teaching and supervisory capabilities, she has completed postgraduate certificates in Learning & Teaching (2012), Research Supervision (2013), and Teaching, Learning & Assessment (2008), all in UK-based institutions. 📚

🧑‍🏫 Professional Experience

Since joining UCLan in 2008, Dr. Liyanage has progressed from Lecturer to Reader. She has served as Senior Lecturer (2011–2015) and Reader (2015–present), and currently oversees multiple academic programs and research activities. Her leadership roles include Chairing the School’s Athena Swan SAT team, acting as REF Lead (UoA13), and Research Degrees Tutor. She has also coordinated dissertations and ethics reviews, showing her holistic engagement with academic development. 🏛️

🔬 Research Interests

Her research encompasses facilities and infrastructure management, public-private partnerships (PPPs), performance measurement, post-disaster reconstruction, and urban resilience. She has special interest in sustainability, zero-carbon targets, and improving disaster resilience through higher education. Her interdisciplinary approach brings together engineering, public policy, and social development frameworks. 🌍

🏆 Awards and Grants

Dr. Liyanage has been the recipient or co-lead of over £1 million in external research funding from prestigious bodies such as Horizon 2020, FP7, and ERASMUS+. Her collaborative projects—like REGARD, CABARET, ASCENT, and BENEFIT—span Europe and Asia, involving institutions in Sri Lanka, Sweden, Estonia, and more. These awards have supported innovation in infrastructure resilience, disaster education, energy trading, and societal reconstruction post-displacement. 🧾

📚 Publications Top Notes

Olushola Kolawole | Food supply chain | Best Researcher Award

Dr. Olushola Kolawole –  Food supply chain –  Best Researcher Award

Alignment with Award Category

Dr. Kolawole’s research, contributions, and professional achievements strongly align with the Best Researcher Award category. His groundbreaking work in supply chain innovation, data-driven methodologies, and organizational learning models demonstrates:High-level originality and innovation in addressing food waste. A strong impact on industry and policy-making, ensuring sustainable solutions for supply chain management. Consistent excellence in academic publishing and thought leadership in global research forums. Influence on future research directions in Lean Six Sigma, supply chain optimization, and food security.

 

University of Bradford | United Kingdom

Profile
Scholar

🎓Early Academic Pursuits 

Education and Training

Olushola Adeborode KOLAWOLE embarked on his academic journey with a strong foundation in economics, earning a B.Sc. in Economics from Olabisi Onabanjo University, Nigeria, in July 2008. His academic curiosity and ambition led him to pursue further studies in logistics and supply chain management, culminating in a Master of Science (M.Sc.) in Logistics and Supply Chain Management from Heriot-Watt University, Scotland, in November 2012. His master’s studies were fully funded by a £40,000 scholarship from the Petroleum Technology Development Fund (PTDF), marking the beginning of his recognition as a promising scholar in the field.

💼Professional Endeavors 

Academic Positions

Currently, Ieda Margarete Oro serves as a Researcher and Professor at UNOESC, where she contributes significantly to the Accounting Sciences Course and the Professional Master’s Degree in Administration. Her expertise extends to the Academic Doctorate program at UNOESC, where she mentors students and leads groundbreaking research initiatives. Her professional experience encompasses diverse areas, including Management Control Systems, Performance Evaluation, Corporate Finance, and Family Businesses. Between 2018 and 2020, she held the prestigious position of Editor-in-Chief of RACE, a well-regarded academic journal. She is also an active member of the scientific committee of the RCCC – CRCSC and an ad hoc associate editor at RAE-FGV, further showcasing her dedication to advancing research in her domain. Additionally, she is a distinguished member of the Santa Catarina Academy of Accounting Science, underscoring her influence in shaping accounting standards and practices.

📚Contributions and Research Focus on Digital Transformation

Olushola’s research focuses on improving supply chain efficiency, particularly in the context of food waste reduction. His Ph.D. research developed a DMAIC-DLL framework aimed at detecting the root causes of food wastage while promoting organizational learning. His research contributions have been widely recognized, with publications in top-tier journals, including Industrial Marketing Management Journal, a 3-star journal.

His ongoing research interests include:

  • Developing advanced Lean Six Sigma methodologies for supply chain optimization.
  • Enhancing supply chain resilience in both developed and developing countries.
  • Bridging the gap between theoretical research and practical applications in business management.
  • Publishing in globally recognized 4-star and 3-star journals to influence managerial policies and practices.

🏆Accolades and Recognition 

Olushola has been the recipient of multiple prestigious scholarships and research grants, including: Fully funded PTDF scholarships for both his master’s (£40,000) and doctoral studies (£100,000). PTDF research grants worth £2000 and an additional £1300 for fieldwork and conference presentations. Grant of £2500 to attend the International Business Research Conference in Zurich, Switzerland. Funding to attend the World Business and Social Science Research Conference in Bangkok, Thailand. Scholarship and grants for research conferences and fieldwork in Nigeria. His professional memberships include affiliations with the: Council of Supply Chain Management Practitioners (CSCMP) International Association for Public Health Logistician (IAPHL) John and Elnora Ferguson Centre for African Studies (JEFCAS) Production and Operations Management Society (POMS)

🌍 Impact and Influence 

Community Impact

hrough his research, Olushola has significantly contributed to the body of knowledge on supply chain optimization, particularly in food waste reduction and sustainability. His work has practical implications for industries seeking to: Minimize food loss in supply chains using Lean Six Sigma methodologies. Improve decision-making through advanced analytical frameworks. Promote sustainable business practices that align with global food security goals.

🔮Legacy and Future Contributions 

Olushola’s commitment to research and teaching ensures his lasting impact on the fields of operations and supply chain management. He envisions a future where: His DMAIC-DLL framework becomes a widely adopted methodology in supply chain optimization. He leads groundbreaking research in stakeholder improvisation and continuous improvement in procurement and logistics. He contributes to shaping policies that enhance supply chain resilience and efficiency on a global scale. He continues to mentor and inspire the next generation of researchers in business and management studies.

Conclusion

Olushola Adeborode KOLAWOLE exemplifies excellence in operations and supply chain management research. His academic achievements, professional expertise, and contributions to knowledge in Lean Six Sigma, food waste reduction, and logistics optimization position him as a thought leader in the field. As he continues to advance his research and engage with global academic and industry networks, his work will undoubtedly shape the future of sustainable supply chain management and organizational learning methodologies.

📚Publications

  • Addressing food waste and loss in the Nigerian food supply chain: Use of Lean Six Sigma and Double-Loop Learning

    Authors: OA Kolawole, JL Mishra, Z Hussain

    Journals: Industrial marketing management

    Leveraging organisational agility in B2B ecosystems to mitigate food waste and loss: A stakeholder perspective

    Authors: KO Adeborode, M Dora, C Umeh, SM Hina, T Eldabi

    Journals: Industrial Marketing Management

    An Evaluation of Climate Change and Water Scarcity as a Causative Factor of Political Instability in the Middle East Region: The Case of Syria

    Authors: OAK Abraham Abado

    Journals: International Journal of Social Science and Human Research

GERMÁN HERRERA VIDAL | Production and Supply Chain | Best Researcher Award

Dr. GERMÁN HERRERA VIDAL –  Production and Supply Chain –  Best Researcher Award

Universidad del Sinú Seccional Cartagena | Colombia

      Profiles

Scopus

Orcid

📍Current Position

Dr. German Herrera Vidal currently serves as an Associate Researcher endorsed by Colciencias, Colombia’s leading agency for science and technology. He is also a certified business consultant through Argentina’s National Institute of Industrial Technologies (INTI). In this capacity, Dr. Herrera Vidal applies his extensive knowledge to consult and guide projects focusing on improving productivity and competitiveness for diverse business organizations.

 

📝Publication Achievements

With a career rich in academic contributions, Dr. German Herrera Vidal has published numerous papers in top-tier journals and conferences in the fields of industrial engineering and business management. His publications primarily focus on optimization, quality management, and innovative methods for improving productivity. These works have contributed significantly to industry knowledge, offering practical solutions for operational and administrative challenges.

 

🔍Ongoing Research

Dr. Herrera Vidal is actively engaged in research that explores advanced industrial engineering solutions. His ongoing projects include the development of new optimization models and simulations for complex operational processes, designed to minimize inefficiencies and boost productivity. He is also examining the integration of sustainable practices in industrial operations, aligning business goals with environmental stewardship.

 

🔬 Research Interests

His research interests lie in developing solutions that address the complexities of productivity and operational efficiency using optimization and simulation methods. A particular focus of his ongoing work includes investigating the applications of bioinformatics in industrial settings, merging computational techniques with engineering principles to improve data-driven decision-making in complex business processes.

 

🎓Academic Background

Dr. German Herrera Vidal holds a Ph.D. in Engineering with a focus on Industrial Engineering from Universidad Nacional Lomas de Zamora (UNLZ, 2024). He also earned a Master’s in Engineering from Universidad Tecnológica de Bolívar (UTB, 2013) and specialized in Business Management at UTB in 2008. His journey began with a degree in Productivity and Quality Engineering from Politécnico Jaime Isaza Cadavid (PJIC, 2000), laying a solid foundation for his expertise in productivity and quality improvement.

 

🏆Scholarships and Awards 

Throughout his career, Dr. Herrera Vidal has received various scholarships and accolades in recognition of his academic and professional excellence. His outstanding contributions to the fields of productivity and quality have been acknowledged both locally and internationally, positioning him as a leader in industrial engineering.

 

🧬Bioinformatics 

Although Dr. Herrera Vidal’s primary focus is on industrial engineering, he has begun integrating bioinformatics techniques into his research. This cross-disciplinary approach allows him to explore how biological systems can inspire solutions to industrial challenges, thereby broadening his impact in industrial engineering.

 

🌐Professional Associations 

Dr. Herrera Vidal is affiliated with several professional associations in engineering and business management. These memberships provide him with a platform for knowledge exchange and professional development, as well as collaboration opportunities with experts in his field.

 

 📚Training & Workshops 

As a lifelong learner, Dr. Herrera Vidal frequently participates in workshops and training sessions on the latest advancements in industrial engineering, quality control, and productivity optimization. His dedication to continuous professional development ensures that he remains on the cutting edge of industry practices and technologies.

 

🎤Oral Presentations and🗣️Thought Leadership 

Dr. Herrera Vidal has delivered numerous oral presentations at prestigious conferences, sharing his findings on productivity and quality enhancement. These presentations have not only contributed to industry knowledge but also fostered valuable professional networks.

 

🧑‍🔬Tasks Completed as a Researcher 

In his role as a researcher, Dr. Herrera Vidal is responsible for conducting comprehensive studies that address critical issues in industrial engineering. His tasks include designing experiments, collecting and analyzing data, and applying simulation models to test hypotheses. His solutions are tailored to meet the unique needs of businesses, ensuring that his research has a lasting, positive impact on productivity and quality standards.

 

🚀Success Factors 

Dr. Herrera Vidal’s success can be attributed to his technical expertise, innovative thinking, and commitment to practical solutions. His proficiency in using optimization and simulation tools enables him to develop strategies that are both efficient and effective. Furthermore, his ability to communicate complex ideas in a clear and accessible manner ensures that his findings can be readily implemented by businesses and organizations.

 

🧪Publications & Laboratory Experience

Dr. Herrera Vidal’s laboratory experience is extensive, covering various aspects of industrial engineering from data collection to quality control testing. His publications, stemming from hands-on experimentation and rigorous analysis, are a testament to his meticulous approach to research. These works serve as valuable resources for those looking to improve operational efficiency and enhance competitive advantage.

 

🔍 Conclusion

Dr. German Herrera Vidal is a leading expert in industrial engineering, with an exceptional track record in research, innovation, and professional development. His accomplishments in productivity and quality engineering, combined with his commitment to advancing industrial practices, make him an invaluable asset to the field. Dr. Herrera Vidal’s journey exemplifies dedication, expertise, and a forward-thinking approach that will continue to impact industrial engineering for years to come.

📚Publications

Mathematical modelling of purchasing optimization for an MRP system with containerization constraints
   Authors: Germán Herrera Vidal; Danilo Abril Hernandez; Edgar Fernando Eslava; Jairo R. Coronado-Hernández; Samir F. Umaña Ibáñez

   Journal : OPSEARCH

Systematic Configurator for Complexity Management in Manufacturing Systems

   Authors: Germán Herrera-Vidal; Jairo R. Coronado-Hernández; Breezy P. Martínez Paredes; Blas Oscar Sánchez Ramos; David Martinez Sierra

   Journal :Entropy

Route Optimization for Open Vehicle Routing Problem (OVRP): A Mathematical and Solution Approach

   Authors: Diego Gasset; Felipe Paillalef; Sebastián Payacán; Gustavo Gatica; Germán Herrera-Vidal; Rodrigo Linfati; Jairo R. Coronado-Hernández

   Journal : Applied Sciences

Deterministic ınventory models with non-perishable product: a comparative study

   Authors: Germán Herrera Vidal; Camilo Molina Guerrero

   Journal: International Journal of System Assurance Engineering and Management

Measuring complexity in manufacturing systems: a new metric in flow shop (Fs) and job shop (Js) environments

   Authors: Germán Herrera Vidal; Jairo R. Coronado Hernández; Claudia Minnaard

   Journal: Production Engineering