Bhaskar Anand | Autonomous Vechicles | Innovative Research Award

Innovative Research Award

Bhaskar Anand

Affiliation Kody Technolab Limited
Country India
Scopus ID 57209881634
Documents 20
Citations 202
h-index 9
Subject Area Autonomous Vehicles
Event Global Automobile Award
ORCID 0000-0002-2035-9446

Bhaskar Anand

Kody Technolab Limited, India

Bhaskar Anand is a researcher associated with Kody Technolab Limited whose scholarly profile includes contributions relevant to autonomous vehicles and intelligent transportation technologies. His recorded research portfolio comprises 20 documents, 202 citations, and an h-index of 9, providing measurable indicators of research activity and scholarly visibility in the field of autonomous vehicle research.
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Abstract

Bhaskar Anand is associated with research activities in autonomous vehicles, an interdisciplinary field combining artificial intelligence, sensing, robotics, communications, control systems, and transportation engineering. His scholarly record includes 20 documents, 202 citations, and an h-index of 9, indicating sustained publication activity and measurable academic influence. Autonomous vehicle research addresses perception, localization, planning, decision-making, vehicle control, connectivity, and safety, with the broader objective of improving transportation efficiency and reducing human-error-related risks[2].

Keywords

Autonomous Vehicles, Automated Driving, Intelligent Transportation Systems, Vehicle Automation, Artificial Intelligence, Automotive Research, Connected Vehicles, Vehicle Safety, Smart Mobility, Sensor Fusion, Autonomous Navigation, Machine Learning, Transportation Engineering, Intelligent Mobility, Automotive Innovation.

Introduction

Autonomous vehicles represent a major research direction within modern transportation engineering, integrating perception, computation, communication, and control into increasingly automated driving systems. Research in this area seeks to address complex road environments, uncertain traffic conditions, human interaction, and operational safety while supporting more efficient and connected mobility systems[2].

Research Profile

Bhaskar Anand’s documented scholarly profile contains 20 research documents and 202 citations, with an h-index of 9. These bibliometric indicators provide a quantitative representation of publication activity and citation-based visibility. The profile is associated with autonomous vehicle research, a rapidly developing area within intelligent transportation and automotive engineering[1].

Research Contributions

Research associated with autonomous vehicles commonly addresses the development and assessment of computational methods for perception, localization, trajectory planning, decision-making, and vehicle control. These components must operate together to support reliable automated driving. The field also requires evaluation of system robustness under changing environmental, traffic, and operational conditions[3].

Publications

The available profile records 20 scholarly documents attributed to Bhaskar Anand and reports 202 citations. Publication activity provides evidence of continued engagement with academic research and contributes to the quantitative assessment of scholarly productivity. Two publications particularly relevant to the stated research area are the book LiDAR Technology for Intelligent Transportation and Autonomous Systems and the IEEE Journal of Emerging and Selected Topics in Industrial Electronics article on object georeferencing, speed, and heading detection using LiDAR-INS/GNSS[2][3].

Research Impact

The reported citation count of 202 and h-index of 9 indicate measurable scholarly visibility within the available indexed record. Citation indicators should be interpreted alongside publication quality, authorship contribution, research originality, collaboration, and field-specific citation practices rather than as standalone measures of research excellence[1].

Award Suitability

Bhaskar Anand’s documented research activity in autonomous vehicles provides a relevant basis for consideration for the Innovative Research Award. The reported publication and citation indicators demonstrate an established scholarly record, while the subject area aligns with emerging automotive technologies and intelligent transportation research[1].

Conclusion

Bhaskar Anand is associated with an academic profile focused on autonomous vehicle research, supported by 20 documents, 202 citations, and an h-index of 9. His research area corresponds with important developments in intelligent transportation, automated driving, LiDAR-based perception, and automotive technology. His documented research record provides a scholarly foundation for consideration under the Innovative Research Award.

References

  1. Elsevier. (n.d.).
    Scopus author details: Bhaskar Anand, Author ID 57209881634.
    Scopus.https://www.scopus.com/authid/detail.uri?authorId=57209881634
  2. Pachamuthu, R., Anand, B., Thakur, A., & Alam, P. (2025).
    LiDAR Technology for Intelligent Transportation and Autonomous Systems.
    CRC Press.DOI:https://doi.org/10.1201/9781003628422
  3. Anand, B., & Rajalakshmi, P. (2025).
    System for Object Georeferencing, Speed, and Heading Detection Using LiDAR-INS/GNSS Mounted on a Mobile Vehicle.
    IEEE Journal of Emerging and Selected Topics in Industrial Electronics, 6(4), 1546–1555.DOI:https://doi.org/10.1109/JESTIE.2025.3572802

Rajesh Eswarawaka | Autonomous Vehicles | Research Excellence Award

Research Excellence Award

Research Profile
Affiliation RNS Institute of Technology
Country India
Scopus ID 56568408300
Documents 22
Citations 31
h-index 3
Subject Area Autonomous Vehicles
Event Global Automobile Award
ORCID 0000-0003-2238-700X

Rajesh Eswarawaka
RNS Institute of Technology

This academic article presents a structured recognition-oriented overview of Rajesh Eswarawaka and considers available scholarly indicators within the framework of the Research Excellence Award. The discussion adopts a neutral and evidence-based approach and summarizes publication activity, indexed documentation, citation visibility, and disciplinary alignment in the field of autonomous vehicles.[1]

Abstract

This article evaluates publicly indexed academic indicators associated with Rajesh Eswarawaka and reviews their relevance in the context of scholarly recognition. The profile demonstrates documented research activity within autonomous vehicle studies supported through indexed publications, citation records, and measurable author metrics. Recognition through an award model is interpreted as an acknowledgment of research continuity, visibility, and domain contribution rather than a definitive measure of scientific value.[1]

Keywords

Research Excellence Award; Rajesh Eswarawaka; Autonomous Vehicles; Scopus Metrics; Academic Recognition

Introduction

Academic awards frequently consider publication activity, citation presence, and documented disciplinary engagement. Within engineering and mobility-related research, autonomous vehicle development remains an interdisciplinary field integrating intelligent systems, control methodologies, and transportation innovation.[2]

Research Profile

Rajesh Eswarawaka is associated with RNS Institute of Technology and maintains indexed scholarly documentation through Scopus and ORCID identifiers. Available metrics indicate 22 indexed documents, 31 citations, and an h-index of 3, representing measurable publication visibility within the indexed environment.[1]

Research Contributions

  • Research engagement related to autonomous mobility and engineering systems.
  • Indexed publication participation and documented scholarly dissemination.
  • Contribution to knowledge exchange through measurable citation activity.
  • Academic alignment with emerging transportation technologies.

Publications

Indexed publications provide evidence of research dissemination and establish scholarly traceability. Publication volume alone does not determine research quality but contributes to visibility and accessibility across academic databases.[1]

  • Indexed Documents: 22

Research Impact

Citation indicators and author-level metrics serve as quantitative signals for scholarly influence while requiring qualitative interpretation. The documented citation count suggests measurable engagement with published work and establishes an observable academic footprint.[1]

Award Suitability

Within the framework of the Global Automobile Award, the available indicators may support consideration under a research excellence model. Evaluation remains dependent on institutional criteria, peer assessment, originality, and documented contribution rather than numerical indicators alone.[3]

Conclusion

The available profile information associated with Rajesh Eswarawaka presents an indexed scholarly record aligned with autonomous vehicle research. Consideration for recognition under a research excellence framework reflects publication visibility, measurable academic engagement, and continued contribution to research communication.[1]

References

  1. Elsevier. (n.d.). Scopus author details: Rajesh Eswarawaka, Author ID 56568408300. Scopus.
    https://www.scopus.com/authid/detail.uri?authorId=56568408300
  2. Autonomous vehicle research literature overview and engineering context.
    https://doi.org/10.1109/5.771073
  3. Global Automobile Award. Award framework and evaluation context.
    https://automobileaward.com/

Jiayin Tang | Automotive Artificial Intelligence | Excellence in Research Award

Dr. Jiayin Tang | Automotive Artificial Intelligence  |  Excellence in Research Award

Associate professor  |  Southwest Jiaotong university  |  China

Prof. Jiayin Tang is a distinguished academic and researcher whose work bridges the fields of manufacturing, reliability engineering, and intelligent systems, with a strong focus on mechanical, electrical, and automation technologies. His scholarly pursuits emphasize reliability assessment, degradation modeling, fault diagnosis, and intelligent prediction within industrial systems, contributing to both theoretical innovation and practical applications in smart manufacturing and system health management. His research encompasses areas such as accelerated life testing, reliability inference under multiple stress factors, and fault detection using deep learning and advanced signal processing. Prof. Tang’s notable publications in leading international journals including IEEE Transactions on Instrumentation and Measurement, Quality and Reliability Engineering International, PLOS ONE, and IEEE Sensors Journal demonstrate his mastery of reliability modeling and intelligent diagnostic algorithms. He has developed advanced methodologies such as Wiener process-based models, complex attention transformers, and graph attention networks to enhance predictive maintenance and system dependability in modern industrial environments. With expertise in automation, transportation systems, and electronic reliability, he continues to contribute significantly to the advancement of smart industrial solutions and sustainable engineering practices. Prof. Tang’s research skills include data-driven modeling, machine learning, statistical analysis, and sensor-based fault detection, reflecting his interdisciplinary strength and innovative vision. His dedication to academic excellence and impactful research has earned him recognition within the international reliability and automation research communities. He has acheived 250 Citations, 39 Documents, 8 h-index.

Profiles:  ORCID Scopus

Featured Publication

  1. Gan, W., & Tang, J. (2024). Multi-Performance Degradation System Reliability Analysis with Varying Failure Threshold Based on Copulas. Symmetry, 16(1), 57.