Aarón Raya López | Smart Cities and Architecture | Innovative Research Award

Innovative Research Award

Aarón Raya López
Universistat Politècnica de València

Aarón Raya López
Affiliation Universistat Politècnica de València
Country Spain
Google Scholar wcHrm_MAAAAJ
Documents Multiple Indexed Publications
Citations 120
h-index 5
Subject Area Urban Mobility & IoT
Event Architecture Engineers Awards
ORCID 0009-0000-7111-1734

This academic recognition article summarizes the scholarly profile of Aarón Raya López, emphasizing contributions to urban mobility, Internet of Things applications, engineering innovation, and interdisciplinary research. The page follows a neutral encyclopedic style while presenting verifiable academic information, publication impact, and professional achievements supported through authoritative scholarly resources.[1]

Abstract

Aarón Raya López conducts research integrating intelligent transportation systems, connected infrastructure, urban mobility analysis, and Internet of Things technologies. His scholarly activities encourage efficient engineering solutions supported by measurable scientific outputs, collaborative investigations, and peer-reviewed dissemination, reflecting continuous professional development within contemporary engineering research environments.[1]

Keywords

Urban Mobility, Internet of Things, Smart Transportation, Intelligent Systems, Engineering Innovation, Smart Cities, Mobility Analytics, Sensor Networks, Sustainable Infrastructure, Traffic Optimization, Digital Engineering, Data Analytics, Transportation Engineering, Intelligent Mobility, Applied Research, Innovation Management, Wireless Technologies, Decision Support, Connected Mobility, Engineering Science.[2]

Introduction

Research concerning urban mobility increasingly combines engineering, information technologies, and intelligent infrastructure. Aarón Raya López contributes within this interdisciplinary landscape through studies emphasizing practical implementation, technological efficiency, and sustainable transportation concepts. Such investigations support evidence-based engineering practices while strengthening collaboration across academic and professional communities.[2]

Research Profile

Affiliated with Universistat Politècnica de València, Aarón Raya López demonstrates measurable scholarly activity including 120 Google Scholar citations, an h-index of five, and an i10-index of four. His research profile illustrates consistent publication efforts focused on innovation, engineering applications, and digital mobility technologies.[1]

Research Contributions

Research contributions include interdisciplinary investigations supporting intelligent transportation, Internet of Things integration, data-driven urban planning, and technological optimization. These studies encourage practical engineering improvements, informed infrastructure management, and sustainable mobility development while contributing valuable scientific knowledge through peer-reviewed publications and collaborative academic initiatives.[2]

Publications

Published research demonstrates engagement with engineering innovation, transportation systems, and intelligent technologies. Scholarly outputs are disseminated through recognized academic platforms, enhancing accessibility and supporting continued scientific discussion. Representative publications may include persistent digital object identifiers ensuring reliable citation and long-term scholarly accessibility.[3]

Research Impact

Citation indicators, interdisciplinary collaboration, and practical engineering applications collectively demonstrate measurable academic influence. Research findings contribute to ongoing discussions surrounding sustainable transportation, intelligent infrastructure, and digital transformation. These achievements indicate continuing scholarly relevance while encouraging broader adoption of innovative engineering methodologies.[1]

Award Suitability

Considering demonstrated research productivity, interdisciplinary focus, citation performance, and technological relevance, Aarón Raya López aligns with the objectives of the Innovative Research Award presented during the Architecture Engineers Awards. Evaluation recognizes scholarly quality, measurable research outcomes, innovation, professional integrity, and sustained academic contributions.[2]

Conclusion

The presented academic profile summarizes available scholarly information using a balanced encyclopedic approach. Research achievements, publication metrics, and engineering contributions collectively illustrate a developing academic career dedicated to innovative mobility solutions, collaborative investigation, and responsible scientific advancement within engineering and technology disciplines.[1]

References

  1. Google Scholar. (n.d.). Author profile: Aarón Raya López.

    https://scholar.google.com/citations?user=wcHrm_MAAAAJ

  2. ORCID. (n.d.). ORCID record: Aarón Raya López.
    https://orcid.org/0009-0000-7111-1734
  3. Crossref. (n.d.). Representative engineering publication with DOI.

    https://doi.org/10.1016/j.trpro.2020.02.001

Jonas Marinho Duarte | Materials and Technology in Architecture | Best Researcher Award

Assoc. Prof. Dr. Jonas Marinho Duarte | Materials and Technology in Architecture | Best Researcher Award

Professor | Federal University of Western Para | Brazil

Professor Jonas Marinho Duarte of the Federal University of Western Para is a physicist and electrical engineer whose work advances the frontiers of nanotechnology and molecular nanoelectronics. With academic training grounded in physics and complemented by advanced degrees in electrical engineering, he has developed expertise in electronic transport, Majorana fermion detection, and the modeling of graphene-like two-dimensional materials using Green’s functions and ab initio methods. His professional experience includes leading and contributing to research projects on molecular electronics, low-dimensional systems, and carbon allotropes, with published studies appearing in Computational Condensed Matter, Physica E, and Optical and Quantum Electronics. He has been actively involved in collaborative work with institutions such as the Federal University of Pará and has contributed to emerging investigations on nanodevices for telecom applications and charge-transport phenomena in 1D and 2D materials. His scholarly engagement is supported by professional memberships within academic networks and his participation in interdisciplinary research groups. Across his career, Professor Duarte has established a growing record of scientific contributions, strengthening the field through computational insights, innovative modeling approaches, and the pursuit of new carbon-based device architectures, positioning him as a strong candidate for recognition in research excellence.

Profile: ORCID

Featured Publications

1. Duarte J.M., Cardoso D.H., Miranda I.R.S., Mota E.A.V., dos Santos da Silva S.J., da Silva C.A.B., Del Nero J., Numerical implementation of phagraphene as patch resonator for a microstrip antenna. Opt. Quantum Electron., 2025, DOI: 10.1007/s11082-025-08404-9.

2. Quaresma L.C., Ferreira D.F.S., Duarte J.M., Moreira M.M., da Silva C.A.B. Jr., Del Nero J., Eigenchannel visualization and transition-voltage spectroscopy in two-dimensional C-57 allotrope. Comput. Condens. Matter, 2025, DOI: 10.1016/j.cocom.2025.e01169.

3. Quaresma L.C., Duarte J.M., Ferreira D.F.S., da Silva C.A.B. Jr., Del Nero J., Electronic transport modulation in C-57: A path toward carbon-based logic and switching devices. Physica E, 2025, DOI: 10.1016/j.physe.2025.116340.

4. Duarte J.M., Santos J.C.S., Ferreira D.F.S., Paula M.V.S., Mota E.A.V., Silva C.A.B., Del Nero J., Systematic investigation of a metallic quadrilateral nanoribbon graphene allotrope for application in nanoelectronics. Comput. Condens. Matter, 2025, DOI: 10.1016/j.cocom.2025.e01007.

5. Duarte J.M., Metodologias ativas e educação ambiental: uma revisão integrativa sobre abordagens inovadoras para o ensino de energia solar. Ensino e Tecnologia em Revista, 2024.

Professor Jonas Marinho Duarte advances the scientific frontier of nanoelectronics by uncovering how emerging carbon allotropes and low-dimensional materials can enable next-generation logic, sensing, and energy-efficient device architectures. His computational research provides fundamental insights that support the development of future telecom, semiconductor, and molecular electronic technologies, strengthening innovation pathways across both academia and industry.