Qilong Yan | Internet of Things | Innovative Research Award

Innovative Research Award

                    Qilong Yan
Affiliation Xidian University
Country China
Scopus ID 58651078200
Documents 5
Citations 12
h-index 2
Subject Area Internet of Things
Event Global CSE Awards

Qilong Yan, affiliated with Xidian University, has developed research contributions in advanced antenna engineering and Internet of Things communication technologies. His publications emphasize phased-array antennas, dual-polarized antenna structures, and high-frequency satellite communication systems. These research activities demonstrate a growing scholarly profile with measurable academic impact and provide an objective basis for consideration under the Global CSE Awards.[1]

Abstract

Qilong Yan has contributed to antenna engineering research supporting modern Internet of Things and satellite communication technologies through investigations of phased-array systems, dual-polarized antennas, and compact high-performance antenna structures. His scholarly publications demonstrate practical engineering innovation, measurable citation performance, and technical relevance for next-generation wireless communication systems. These contributions collectively reflect an emerging research profile characterized by scientific rigor, application-oriented design methodologies, and continuous advancement within microwave engineering and wireless communication research domains, supporting recognition through international academic award evaluation.[1][2][3]

Keywords

Internet of Things, Antenna Engineering, Phased Array, Satellite Communications, Ka Band, Ku Band, Dual Polarization, Magneto-Electric Dipole, Wireless Communications, Microwave Engineering.

Introduction

Qilong Yan conducts research focused on advanced antenna technologies supporting wireless communications and Internet of Things applications. His work addresses practical engineering challenges involving phased arrays, polarization improvement, and communication efficiency while contributing to the broader development of modern microwave systems for academic and industrial applications.[1]

Research Profile

Affiliated with Xidian University, Qilong Yan has established a developing publication record indexed by Scopus with documented citations and scholarly visibility. His investigations emphasize antenna design, electromagnetic performance optimization, and wireless communication technologies, reflecting continued participation in internationally recognized engineering research activities.[2]

Research Contributions

His research contributions include shared-aperture phased arrays, series-fed antenna arrays with improved decoupling structures, and dual-polarized magneto-electric dipole antenna designs. These studies enhance communication efficiency, antenna gain, bandwidth utilization, and polarization performance across advanced wireless and satellite communication environments.[1][2]

Publications

Published studies demonstrate expertise in microwave antenna engineering through peer-reviewed conference and journal contributions. The publications emphasize practical engineering solutions for satellite communication, electromagnetic optimization, and compact antenna architectures, supporting reliable wireless communication technologies and future Internet of Things infrastructure development.[1][3]

Research Impact

Although representing an early-stage academic profile, the research has achieved measurable citation activity and demonstrates technical relevance. The published findings contribute to antenna engineering knowledge, supporting ongoing innovation in high-frequency wireless communications and offering practical value for future communication system development.[1][2]

Award Suitability

Based on documented scholarly publications, Scopus-indexed research output, engineering innovation, and contributions to advanced communication technologies, Qilong Yan demonstrates qualifications appropriate for consideration under the Innovative Research Award category. Evaluation remains dependent upon the complete academic review process and supporting evidence submitted for assessment.[2][3]

Conclusion

Qilong Yan’s research portfolio reflects consistent contributions to antenna engineering and wireless communication research through peer-reviewed publications and measurable scholarly recognition. Continued investigation within Internet of Things and satellite communication technologies is expected to strengthen future scientific impact and international academic visibility.[1][3]

External Links

References

  1. Yan, Q., et al. (2025). A Dual Circularly Polarized Shared-Aperture Phased Array with Microstrip Patch Antennas for Ka/Ku-Band Satellite Communications. IEEE.
    https://ieeexplore.ieee.org/document/11588898
  2. Yan, Q., et al. (2025). Series-Fed Antenna Arrays Based on T-Shaped Decoupling Structure. IEEE.
    https://ieeexplore.ieee.org/document/11588681
  3. Yan, Q., et al. (2023). Design of Dual-Polarized Magneto-Electric Dipole Antenna with Improved Gain. IEEE.
    https://ieeexplore.ieee.org/document/10250154

Surender Singh | Internet of Things | Best Researcher Award

Mr. Surender Singh | Internet of Things | Best Researcher Award

Assistant Professor at Bhai Gurdas Institute of Engineering and Technology | India

Dr. Surender Singh is a highly dedicated and passionate researcher whose scholarly contributions in the domains of wireless sensor networks, wireless body area networks, and intelligent routing algorithms demonstrate both technical depth and practical societal relevance. His extensive academic journey has been supported by his role as an Assistant Professor, where he combines classroom teaching with impactful research. His patents on energy-efficient routing protocols and wireless charging stations highlight his capacity to translate innovative ideas into practical solutions with real-world application potential. Alongside his patents, his book chapters, IEEE-indexed review papers, and SCIE-indexed journal articles further strengthen his academic credibility, reflecting a growing recognition in reputed publication platforms. Beyond publications, Dr. Singh’s long-term teaching career, leadership positions as Dean and HOD, and award recognition for teaching excellence reveal him as both an academic leader and innovator. The upward trajectory of his recent research productivity suggests a growing international influence and sets the foundation for even greater impact in future years.

Professional Profiles

Scopus | ORCID

Education

Dr. Surender Singh has built a strong academic foundation in the field of Computer Science and Engineering. He completed his Bachelor of Technology (B.Tech.) and Master of Technology (M.Tech.) in Computer Science & Engineering, which allowed him to develop a deep understanding of core computational concepts, programming, and system design. To further strengthen his academic credentials, he pursued a Doctor of Philosophy (Ph.D.) in Computer Science & Engineering, with his thesis successfully submitted. His doctoral research focuses on advanced methods of energy-efficient communication and optimization in wireless body area networks, highlighting his strong research orientation and commitment to advancing knowledge. This blend of undergraduate, postgraduate, and doctoral qualifications not only demonstrates his academic growth but also reflects his dedication to lifelong learning and contribution to the ever-evolving discipline of computing. His academic journey serves as a firm foundation for his teaching, research, and leadership roles in higher education.

Experience

Dr. Surender Singh has accumulated extensive experience in academia and industry, bringing a well-rounded perspective to his teaching and research. He has served as an Assistant Professor in the Department of Computer Science & Engineering at a reputed engineering institute, where he has been engaged in teaching core and advanced subjects. His responsibilities have extended beyond the classroom, where he has worked as Dean (Academics), Dean (Admissions), and Head of Department, leading initiatives in accreditation, quality assurance, and curriculum development. Before his teaching career, he also worked in the industry as a Sales and Service Engineer, gaining practical knowledge of computing hardware and systems. His long-standing association with academia has enabled him to mentor students, coordinate accreditation processes, and manage academic operations with efficiency. This blend of teaching, leadership, and technical expertise underlines his ability to bridge the gap between theoretical knowledge and its practical application.

Skills

Dr. Singh possesses a versatile set of technical and professional skills that make him a competent educator and researcher in the field of computer science. He is proficient in programming languages such as C, C++, and Java, with a strong command of data structures, algorithms, and object-oriented programming principles. His knowledge extends to operating systems and computer graphics, which he teaches with clarity and practical application. Beyond software expertise, he also has hands-on experience with system hardware and testing tools, including exposure to machine learning and predictive analysis using Python. His ability to apply computational methods to real-world problems is a defining feature of his skill set. Equally important are his organizational and interpersonal abilities, demonstrated through his roles as coordinator of accreditation activities and leader in academic administration. His capability to work in teams, adapt to diverse environments, and manage projects enhances his overall effectiveness as a professional.

Research Focus

Dr. Singh’s primary research focus lies in the domain of Wireless Sensor Networks and Wireless Body Area Networks (WBANs), with an emphasis on developing energy-efficient routing protocols. His research explores optimization methods, adaptive relay selection, multi-criteria decision-making, and data compression techniques aimed at improving quality of service and energy efficiency in WBAN applications. He has published extensively in reputed journals and international conferences, contributing book chapters with globally recognized publishers such as Springer and CRC Press. His recent works include routing protocols inspired by metaheuristic approaches, hybrid models incorporating compression techniques, and adaptive relay-assisted frameworks. Alongside network design, he has also contributed to areas of digital image processing, computer graphics, and predictive analytics, showcasing interdisciplinary engagement. His ability to combine theoretical frameworks with practical application ensures his research addresses both academic and industrial challenges, advancing the future of intelligent communication networks and healthcare monitoring systems.

Awards 

Dr. Singh has been recognized for his dedication to teaching and academic excellence with the ISTE Section Best Teacher Award, a prestigious honor that highlights his impact as an educator. This award reflects his strong student mentorship, innovative teaching practices, and contributions to academic growth at his institution. Beyond awards, his professional recognition extends through life membership in ISTE, where he actively contributes to knowledge sharing and technical education initiatives. His involvement in workshops on machine learning, patent awareness, and generic skills development further demonstrates his commitment to continuous professional improvement. He has also secured patents related to energy-efficient routing protocols and wireless charging stations, underscoring his capacity for innovation and applied research. His publication record across reputed journals and conferences further cements his position as a recognized scholar in computer science. These honors and achievements collectively demonstrate his dedication to advancing education, research, and professional practice.

Publication Top Notes

Title: Invariant Feature-Based Dynamic Scene Classification Using the Optimized Convolution Neural Network
Year: 2022

Title: A Moth-Flame Inspired Routing Protocol for Selection of Relay Node in Wireless Body Area Network
Year: 2023

Title: Energy Efficient Routing Methods in Wireless Body Area Networks: A Brief Study
Year: 2023

Title: Selection of Relay Node using Multi-Criteria Decision Making in Wireless Body Area Network
Year: 2024

Title: Adaptive Relay-Assisted WBAN Protocol: Enhancing Energy Efficiency and QoS through Advanced Multi-Criteria Decision-Making
Year: 2025

Title: A Hybrid-EPC Routing Protocol incorporating Delta Data Compression to Improve Energy Efficiency in Wireless Body Area Network
Year: 2025

Conclusion

In conclusion, Dr. Surender Singh demonstrates a strong combination of academic achievements, innovative research, patents, and professional leadership, making him highly suitable for the Best Researcher Award. His work reflects a perfect blend of theory and application, especially in advancing energy-efficient routing protocols for wireless body area networks, AI-integrated communication systems, and healthcare-related computational solutions. While there remains scope for enhancing international collaborations, citation impact, and interdisciplinary engagement, his scholarly journey is clearly moving toward broader global recognition. His patents and SCIE-indexed publications prove his commitment to contributing novel solutions that address real-world technological and biomedical challenges. Additionally, his leadership roles in academia, including contributions as Dean, HOD, and coordinator, underscore his ability to influence both research and institutional growth. By merging innovation with practical impact, Dr. Singh’s work enriches the academic community and creates direct societal benefits, particularly in health-focused and technology-driven applications, establishing him as a forward-looking researcher with substantial future potential.