Malghalara Kakar | Cognitive Radio Networks | Research Excellence Award

Research Excellence Award

Malghalara Kakar
Affiliation BUITEMS – Balochistan University of Information Technology, Engineering and Management Sciences
Country Pakistan
Scopus ID 57205062746
Documents 1
Citations 6
h-index 1
Subject Area Cognitive Radio Networks and Wireless Communication
Event Global Cad Awards

Malghalara Kakar
BUITEMS, Quetta, Pakistan.

Malghalara Kakar is affiliated with BUITEMS – Balochistan University of Information Technology, Engineering and Management Sciences, Quetta, Pakistan. Her scholarly profile is associated with wireless communication systems, cognitive radio technologies, Bayesian game theory applications, and user behavior analysis within spectrum mobility environments. Her published work contributes to the growing field of intelligent communication systems and spectrum optimization research in cognitive radio networks.[1]

Abstract

This article presents an academic overview of the research contributions and scholarly profile of Malghalara Kakar in the field of cognitive radio networks and wireless communication systems. Her published research focuses on Bayesian game-based user behavior analysis for spectrum mobility in cognitive radios, contributing to advancements in intelligent communication protocols, spectrum efficiency, and adaptive wireless systems. The study reflects interdisciplinary integration between communication engineering, probabilistic modeling, and intelligent spectrum management methodologies.[2]

Keywords

Cognitive Radio; Wireless Communication; Bayesian Game Theory; Spectrum Mobility; User Behavior Analysis; Spectrum Optimization; Intelligent Networks; Dynamic Spectrum Access; Communication Engineering; Adaptive Wireless Systems.

Introduction

Cognitive radio technology has emerged as a critical research area within modern wireless communication systems due to increasing demands for spectrum efficiency and intelligent network management. Contemporary communication research emphasizes adaptive spectrum allocation, spectrum mobility optimization, user behavior prediction, and interference reduction strategies. Bayesian game theory has become an important analytical framework for modeling decision-making and behavioral interactions within dynamic spectrum environments.[3]

Within this research domain, Malghalara Kakar has contributed to the analysis of spectrum mobility in cognitive radio systems through Bayesian game-based methodologies. Her work addresses user behavior dynamics and intelligent communication strategies in adaptive wireless environments.[2]

Research Profile

Malghalara Kakar is associated with BUITEMS – Balochistan University of Information Technology, Engineering and Management Sciences, Quetta, Pakistan. Her Scopus profile identifies scholarly activity in wireless communication engineering and cognitive radio research, with emphasis on Bayesian game theory applications for spectrum mobility analysis.[1]

Her academic contribution is represented through a peer-reviewed publication in the journal Physical Communication, demonstrating engagement in intelligent communication systems research and adaptive wireless network methodologies.[2]

Research Contributions

Kakar’s primary research contribution involves Bayesian game-based user behavior analysis for spectrum mobility in cognitive radios. This research explores intelligent decision-making mechanisms and adaptive spectrum management strategies within wireless communication environments.[2]

The study contributes to communication engineering by examining how user behaviors influence dynamic spectrum access and mobility optimization in cognitive radio systems. Bayesian modeling techniques within the research framework support efficient spectrum allocation and intelligent wireless network adaptation.[4]

Her work further contributes to interdisciplinary communication research integrating wireless engineering principles, probabilistic analysis, behavioral modeling, and intelligent communication protocol development.[3]

Publications

  • Kakar, M., et al. “Bayesian game-based user behavior analysis for spectrum mobility in cognitive radios.” Physical Communication, 2019.

The publication reflects research engagement in intelligent communication systems, spectrum management optimization, and adaptive wireless communication technologies.[2]

Research Impact

Malghalara Kakar’s research contributes to contemporary developments in cognitive radio communication systems and intelligent spectrum mobility management. Her work supports ongoing advancements in dynamic spectrum allocation and adaptive wireless communication methodologies.[4]

The citation activity associated with her publication indicates scholarly relevance within the communication engineering and wireless systems research community. The integration of Bayesian analytical approaches with spectrum mobility research enhances the practical and theoretical value of the study.[1]

Award Suitability

Malghalara Kakar demonstrates suitability for recognition within the Research Excellence Award category through her contribution to intelligent wireless communication systems and cognitive radio research. Her work addresses technologically significant challenges associated with adaptive spectrum mobility and user behavior analysis within modern communication infrastructures.[2]

Her publication reflects scholarly engagement in emerging communication technologies and interdisciplinary analytical methodologies involving wireless engineering and Bayesian decision-making models. Continued research activity and expanded publication output may further strengthen her academic visibility and research impact within communication engineering disciplines.[3]

Conclusion

Malghalara Kakar has established an emerging scholarly profile in cognitive radio systems and wireless communication research through her work on Bayesian game-based spectrum mobility analysis. Her contribution to intelligent communication technologies reflects interdisciplinary integration between communication engineering, adaptive spectrum management, and probabilistic analytical modeling. Continued publication activity and broader collaborative research participation may further enhance her academic influence and visibility within advanced wireless communication research communities.[1]

References

  1. 1. Elsevier. (2026). Scopus author details: Kakar, Malghalara, Author ID 57205062746. Scopus Preview.
    https://www.scopus.com/authid/detail.uri?authorId=57205062746
  2. 2. Kakar, M., et al. (2019). Bayesian game-based user behavior analysis for spectrum mobility in cognitive radios. Physical Communication.
    https://www.sciencedirect.com/science/article/abs/pii/S1874490718301344
  3. 3. Akyildiz, I. F., Lee, W. Y., Vuran, M. C., & Mohanty, S. (2006). Next generation/dynamic spectrum access/cognitive radio wireless networks: A survey. Computer Networks.
    https://doi.org/10.1016/j.comnet.2006.05.001
  4. 4. Haykin, S. (2005). Cognitive radio: Brain-empowered wireless communications. IEEE Journal on Selected Areas in  Communications.
    https://doi.org/10.1109/JSAC.2004.839380

Nikos Mantadakis | Engineering | Best Researcher Award

Mr. Nikos Mantadakis | Engineering | Best Researcher Award

PhD candidate | Aristotle University of Thessaloniki (AUTh) | Greece

Nikolaos (Nikos) Mantadakis is a Greek civil engineer and researcher specializing in the numerical modeling and analysis of floating offshore structures, with a strong focus on the co-exploitation of wind and wave energy systems. His research integrates computational hydrodynamics, structural dynamics, and hydroelasticity to develop advanced simulation frameworks for hybrid offshore energy platforms. He has contributed to the development and validation of computational tools such as HAMS-MREL and has published in leading journals including Renewable Energy and the Journal of Marine Science and Engineering. His works address aero-hydro-servo-elastic coupling, hydrodynamic interactions, and resilience assessment of marine and coastal infrastructure. As part of his scientific engagement, he has actively participated in the COST Action “WECANet,” promoting European collaboration in marine renewable energy research, and contributed to the conceptual design of the FORCYS floating offshore wind turbine. Mantadakis also serves as a reviewer for international conferences and journals in offshore and polar engineering, demonstrating his recognized expertise in the field. With 78 citations from 75 documents, 7 published works, and an h-index of 4, his ongoing research aims to enhance the understanding and performance optimization of floating energy systems through advanced computational methods, supporting the sustainable development of offshore renewable energy technologies.

Profile: Scopus

Featured Publications

Raghavan, V., Loukogeorgaki, E., Mantadakis, N., Metrikine, A. V., & Lavidas, G. (2024). HAMS-MREL, a new open source multiple body solver for marine renewable energies: Model description, application and validation. Renewable Energy, 237, 121577.

 

Qiang Chen | Structural Design | Best Researcher Award

Dr. Qiang Chen | Structural Design | Best Researcher Award

Postdoctoral | National University of Defense Technology | China

The author of the study published in Applied Sciences (MDPI) focuses on exploring the relationship between gut microbiota and Autism Spectrum Disorder (ASD) through advanced computational and metagenomic analysis. With an educational background in bioinformatics, computational biology, and data science, the author possesses a strong foundation in machine learning, statistical modeling, and microbial genomics. Professionally, the author has contributed to multidisciplinary research integrating artificial intelligence with biological data to uncover disease-associated biomarkers, with expertise spanning microbiome data analysis, diagnostic model development, and explainable AI applications in healthcare. The author’s research interests include computational microbiology, machine learning for biomedical data, metagenomic biomarker discovery, and neurodevelopmental disorder diagnostics. Throughout their career, the author has received several awards and recognitions for excellence in scientific research, innovation in data-driven healthcare solutions, and contributions to interdisciplinary bioinformatics research. In conclusion, the author’s work presents a promising approach to ASD diagnosis through microbial pattern recognition, demonstrating that the proposed union feature method and AdaBoost classifier achieve exceptional performance, while the identification of Prevotella sp.

Profile: Orcid

Featured Publications

Chen, Q., Wan, H., Huang, C., Ye, Y., & Li, D. (2025). The thermomechanical coupling in diamond/SiC composites. Diamond and Related Materials, 112936.

Huang, J., Li, Y., Yu, X., Liu, Z., Wang, F., Yue, Y., Zhang, R., Dai, R., Yang, K., Liu, H., … Chen, Q. (2024). Improved thermal dissipation in a MoS₂ field-effect transistor by hybrid high-k dielectric layers. ACS Applied Materials & Interfaces.

Zhao, F.-Y., Jiang, J., Bai, S.-X., Chen, Q., & Ye, Y.-C. (2024). Evaluating predictive scheme for thermomechanical properties of Si-diamond composites. Scientific Reports.

Chen, Q., Bai, S., & Ye, Y. (2023). Highly thermal conductive silicon carbide ceramics matrix composites for thermal management: A review. Journal of Inorganic Materials.

Chen, Q., Zhu, L., Bai, S., & Ye, Y. (2023). Preparation and properties of highly thermal conductive C/C–SiC. Materials Today Communications, 36, 106595.

Ye, Y., Ni, Z., Huang, C., Bai, S., & Chen, Q. (2022). Constitutive model of elastic response for Fe–TiB₂ composites. Materials Today Communications, 33, 104620.

Ye, Y.-C., Zhao, F.-Y., Huang, C.-M., Bai, S.-X., & Chen, Q. (2022). Multiscale simulation and experimental measurements of the elastic response for constructional steel. Scientific Reports.

Jia, J., Li, C., Chen, Q., Bai, S., Chang, J., Xiong, D., Gao, M., Li, S., & Xiao, J. (2022). Effects of SiC content on the mechanical and thermophysical properties of 3D Cf/SiC–Al composites. Ceramics International, 48(14), 19919–19929.

Santosh Nandi | structural design | Young Researcher Award

Dr. Santosh Nandi | structural design | Young Researcher Award

Postdoctoral Fellow at Universidad Tecnológica Metropolitana Santiago, Chile

Dr. Santosh S. Nandi is currently a Fondecyt Postdoctoral Fellow in the Department of Mechanical Engineering at the Faculty of Engineering, Metropolitan Technological University, Chile. His research spans functional nanomaterials, nanocomposites, metal-organic frameworks, and hybrid structures for advanced energy, sensor, optical, and catalytic applications. Nandi has contributed significantly through numerous international publications, patents, book chapters, and active involvement in global scientific communities.

Professional Profile

Google Scholar

Education & Experience 

Dr. Santosh S. Nandi holds a Ph.D. in Nanomaterials from Visvesvaraya Technological University, Belagavi, obtained through the Angadi Institute of Technology and Management. He completed his M.Sc. in Organic Chemistry at Fergusson College, Pune University, and earned a B.Sc. degree with specialization in Chemistry, Botany, and Geology from G. S. Science College under Karnataka University, Dharwad.

Professional Development 

  • Fondecyt Postdoctoral Fellow at the Department of Mechanical Engineering, Metropolitan Technological University, Chile.

  • Former Assistant Professor at KLE Technological University, Dr. M. S. Sheshgiri Campus, Belagavi, India.

  • Active member and contributor to multiple international collaborative research projects in the fields of functional nanomaterials and nanocomposites.

Research Focus 

  • Synthesis and characterization of functional nanomaterials and metal-organic frameworks for advanced energy storage and gas sensing applications.

  • Investigation of electrical, optical, dielectric, and photoluminescent properties of rare-earth-doped nanocomposites for photovoltaic, sensor, and supercapacitor technologies.

  • Development of innovative hybrid nanomaterials for catalysis, gas storage, and environmental remediation.

Awards and Honors

  • Awarded a Gold Medal during undergraduate studies in Geology by Karnataka University, Dharwad.

  • Received Best Oral Presentation Award at the International Conference on Advances in Material Science (ICAMS-2020).

  • Multiple international patents granted in Australia, India, and Germany for novel nanostructure synthesis and sensor development.

Publication Top Notes

1. Removal of hexavalent Chromium-Industry treated water and Wastewater: A review
✏️ Authors: SS Kerur, S Bandekar, MS Hanagadakar, SS Nandi, GM Ratnamala, et al.
🗞️ Materials Today: Proceedings, 42, 1112–1121 (2021) – Citations: 146


📚 2. Enhanced photoluminescence properties of Gd(x−1)SrxO:CdO nanocores and their study of optical, structural, and morphological characteristics
✏️ Authors: V Adimule, SS Nandi, BC Yallur, D Bhowmik, AH Jagadeesha
🗞️ Materials Today Chemistry, 20, 100438 (2021) – Citations: 76


📚 3. Synthesis, Characterization of Cr Doped TeO₂ Nanostructures and its Application as EGFET pH Sensor
✏️ Authors: V Adimule, RG Revaiah, SS Nandi, AH Jagadeesha
🗞️ Electroanalysis, 33(3), 579–590 (2021) – Citations: 65


📚 4. Optical, structural and photoluminescence properties of GdₓSrO:CdO nanostructures synthesized by Co-precipitation method
✏️ Authors: V Adimule, SS Nandi, BC Yallur, D Bhowmik, AH Jagadeesha
🗞️ Journal of Fluorescence, 31(2), 487–499 (2021) – Citations: 65


📚 5. A Facile Synthesis of Poly(3‐octyl thiophene):Ni₀.₄Sr₀.₆TiO₃ Hybrid Nanocomposites for Solar Cell Applications
✏️ Authors: V Adimule, A Suryavanshi, Y BC, SS Nandi
🗞️ Macromolecular Symposia, 392(1), 2000001 (2020) – Citations: 43


📚 6. 🚫 RETRACTED ARTICLE: Recent Advances in the One-Pot Synthesis of Coumarin Derivatives from Different Starting Materials Using Nanoparticles: A Review
✏️ Authors: VM Adimule, SS Nandi, SS Kerur, SA Khadapure, S Chinnam
🗞️ Topics in Catalysis, 1–1 (2022) – Citations: 41


📚 7. A facile synthesis of Cr doped WO₃ nanostructures, study of their current-voltage, power dissipation and impedance properties of thin films
✏️ Authors: V Adimule, S Nandi, HJ Adarsha
🗞️ Journal of Nano Research, 67, 33–42 (2021) – Citations: 41


📚 8. Enhanced Power Conversion Efficiency of the P3BT (Poly-3-Butyl Thiophene) Doped Nanocomposites of Gd-TiO₃ as Working Electrode
✏️ Authors: V Adimule, SS Nandi, AH Jagadeesha Gowda
🗞️ Techno-Societal 2020: Proceedings of the 3rd International Conference, (2021) – Citations: 34


📚 9. CNT/graphene-assisted flexible thin-film preparation for stretchable electronics and superconductors
✏️ Authors: V Adimule, SS Nandi, BC Yallur, N Shaikh
📖 Sensors for Stretchable Electronics in Nanotechnology, 89–103 (2021) – Citations: 32


📚 10. Semiconductor current-voltage characteristics of some novel perovskite ionic nanocomposites of Sr₀.₅, Cu₀.₄, Y₀.₁ and Sr₀.₅, Mn₀.₅ and their electronic sensor applications
✏️ Authors: SS Nandi, A Suryavanshi, V Adimule, SR Maradur
🗞️ AIP Conference Proceedings, 2274(1), 020006 (2020) – Citations: 28


📚 11. Devices and sensors based on additively manufactured shape-memory of hybrid nanocomposites
✏️ Authors: V Adimule, SS Nandi, BC Yallur
📖 Shape Memory Composites Based on Polymers and Metals for 4D Printing, (2022) – Citations: 25


📚 12. Synthesis, impedance, and current–voltage characteristics of strontium‐manganese titanate hybrid Nanoparticles
✏️ Authors: A Suryavanshi, V Adimule, SS Nandi
🗞️ Macromolecular Symposia, 392(1), 2000002 (2020) – Citations: 25


📚 13. Synthesis, Structural and Optical Properties of Co Doped Sm₂O₃ Nanostructures
✏️ Authors: S Nandi, V Adimule, BC Yallur
🗞️ Advanced Materials Research, 1173, 59–69 (2022) – Citations: 23


📚 14. Biogenic Synthesis of Magnetic Palladium Nanoparticles Decorated Over Reduced Graphene Oxide Using Piper Betle Petiole Extract (Pd-rGO@Fe₃O₄ NPs) as Catalyst
✏️ Authors: V Adimule, BC Yallur, MM Pai, SR Batakurki, SS Nandi
🗞️ Topics in Catalysis, 1–14 (2022) – Citations: 22


📚 15. Fabrication of novel rare earth doped ionic perovskite nanomaterials of Sr₀.₅, Cu₀.₄, Y₀.₁ and Sr₀.₅ and Mn₀.₅ for high power efficient energy harvesting
✏️ Authors: SS Nandi, A Suryavanshi, V Adimule, BC Yallur
🗞️ AIP Conference Proceedings, 2274(1), 020005 (2020) – Citations: 21


📚 16. Synthesis, Morphology and Enhanced Optical Properties of Novel GdₓCo₃O₄ Nanostructures
✏️ Authors: V Adimule, BC Yallur, SR Batakurki, S Nandi
🗞️ Advanced Materials Research, 1173, 71–82 (2022) – Citations: 20


📚 17. Rare earth based nanocomposite materials for prominent performance supercapacitor: a review
✏️ Authors: SS Nandi, V Adimule, SA Kadapure, SS Kerur
🗞️ Applied Mechanics and Materials, 908, 3–18 (2022) – Citations: 19


📚 18. Synthesis, characterization and impedance studies of novel nanocomposites of gadolinium titanate
✏️ Authors: V Adimule, A Suryavanshi, S Nandi
🗞️ IOP Conference Series: Materials Science and Engineering, 872(1), 012099 (2020) – Citations: 18


📚 19. Conversion of clinically isolated syndrome to multiple sclerosis: a prospective multi-center study in Eastern India
✏️ Authors: TK Banerjee, M Saha, E Ghosh, A Hazra, A Das, D Choudhury, S Ojha, et al.
🗞️ Multiple Sclerosis Journal–Experimental, Translational and Clinical, 5(2), (2019) – Citations: 18


📚 20. Super capacitor characteristics of novel rare earth perovskite nanomaterials of Sr₀.₅, Cu₀.₄, Y₀.₁
✏️ Authors: SS Nandi, A Suryavanshi, V Adimule, BC Yallur
🗞️ AIP Conference Proceedings, 2274(1), 020007 (2020) – Citations: 17


Conclusion

Dr. Santosh S. Nandi is a committed researcher and academician with extensive contributions to nanomaterial science, demonstrated through high-impact publications, patents, and active global collaborations. His strong interdisciplinary background and dedication to advanced materials research continue to drive innovations in energy, environmental, and sensor technologies.

Yichao Wang | Engineering | Best Researcher Award

Assoc. Prof. Dr Yichao Wang | Engineering | Best Researcher Award

Associate Professor, Shenyang City University, China

Dr. Yichao Wang is an accomplished researcher whose work bridges the gap between theoretical innovation and practical engineering application. His contributions to CAD and civil infrastructure — through integration of BIM/CIM, AI, and blockchain — have directly advanced smart city initiatives and underground safety. The breadth of awards, project leadership, and publication in indexed journals positions him as a top contender for the Best Researcher Award.

Profile
  • Orcid
  • Google scholar
📚Publication 

🏁conclusion:

Dr. Wang embodies the values of impactful, forward-thinking research in the field of CAD for civil and mechanical engineering. Continued engagement with the global academic community and expansion into editorial and authorship roles would further enhance his academic influence.

Manisha Bhende | Computer Engineering | Women Researcher Award

 

Dr Manisha Bhende | Computer Engineering | Women Researcher Award

Professor,Dr. D. Y. Patil Vidyapeeth,India

Dr. Manisha Bhende is a highly qualified and experienced academician with a Ph.D. in Computer Engineering and a career spanning more than two decades. Her leadership position and educational background strongly position her for a research-focused recognition. However, more details related to active research contributions, impact metrics, and specific research themes would make the case for this award more compelling.

Publication Profile

Education 🎓:

Dr. Manisha Bhende holds a Ph.D. in Computer Engineering from Savitribai Phule Pune University (2017), with her research focused on energy-efficient topology control algorithms in Wireless Sensor Networks. She also earned an M.E. in Computer Engineering (2007) from the same university and a B.E. from Government College of Engineering, Amravati (1998), where she graduated with First Class. She completed her higher secondary and secondary education with excellent scores of 77% and 85.57% respectively.

Work and Research Experience 💼:


With over 24 years of teaching experience, Dr. Bhende currently serves as Professor and Director In Charge at Dr. D. Y. Patil Vidyapeeth’s School of Science and Technology, Tathawade, Pune. She has previously worked as Professor at Marathwada Mitramandal’s Institute of Technology and held senior academic positions at various reputed institutions including Dr. D. Y. Patil Institute of Engineering Management and Research, D.Y. Patil College of Engineering, and Y.B. Patil Polytechnic. She has also served as a visiting faculty at SCIT, Hinjawadi.

Grants, Awards, and Fellowships 🏆:

Dr. Bhende was the Second Prize Winner at the CSI Regional Competition for “Young IT Professionals” (2006) and a Regional Winner of Avishkar Project Competition. Her innovative project on document security gained special recognition.

Skills 💻:

  • Wireless Sensor Networks, IoT, Mobile Computing, Embedded Systems
  • Machine Learning in Healthcare, Smart Systems, Topology Control Algorithms

  • Innovation Management, IP Commercialization, Research Supervision

Research Focus & Contributions:

 

Her doctoral research, supervised by Dr. Sanjeev Wagh, addressed critical issues in Wireless Sensor Networks with a focus on topology control and energy optimization. Her work has significantly contributed to domains such as sensor networks, embedded systems, mobile computing, and AI-based healthcare solutions.

Publication : 

Her research focuses on IoT, WSNs, network security, cloud computing, data science, and machine learning. She has authored and edited several books, including:Fundamentals of Data Science (CRC Press, 2021)

  • Energy Optimization Protocol Design for Sensor Networks in IoT Domains (CRC Press, forthcoming 2022)

  • Handbook of Research on Applied Intelligence for Health and Clinical Informatics (IGI Global, 2021)

  • Object Detection by Stereo Vision Images (Scrivener Publishing, Wiley, forthcoming 2022)

Dr. Bhende has published over 70 research papers, with notable works in healthcare applications using machine learning and deep learning techniques .​

conclusion:

Dr. Bhende is likely to be a commendable nominee for the Research for Women Researcher Award, especially if supported by a detailed research portfolio and evidence of impact. Providing this additional information could significantly enhance her chances of being selected.