Doina Pisla | Robotics | Best Researcher Award

Best Researcher Award

Doina Pisla
Technical University of Cluj-Napoca, Romania

Researcher Information
Affiliation Technical University of Cluj-Napoca
Country Romania
Scopus ID 14067935700
Documents 290
Citations 2,101
h-index 27
Subject Area Robotics
Event International Research Data Analysis Excellence & Awards
ORCID 0000-0001-7014-9431

Doina Pisla is a Romanian robotics researcher affiliated with the Technical University of Cluj-Napoca. Her documented research encompasses parallel robotics, kinematics, mechatronics, biomedical engineering, surgical robotics, and rehabilitation systems. Her publication record includes work addressing robotic motion resolution, surgical robot calibration, and the systematic design of parallel rehabilitation robots. [1] [2] [3]

Abstract

Doina Pisla’s research profile reflects sustained work in robotics and mechatronics, particularly parallel robotic systems and their applications in medicine. Her documented publications address computational motion resolution, accuracy assessment and calibration of surgical robots, and systematic rehabilitation robot design. These topics connect theoretical robotics, computational modeling, engineering analysis, and biomedical applications. [1] [2] [3]

Keywords

  • Robotics
  • Parallel Robots
  • Robot Kinematics
  • Mechatronics
  • Surgical Robotics
  • Robot Calibration
  • Motion Resolution
  • Rehabilitation Robotics

3. Introduction

Robotics research increasingly combines mathematical modeling, computational analysis, precision engineering, and biomedical applications. Doina Pisla’s work addresses these areas through studies of parallel manipulators, surgical robotics, calibration, and rehabilitation systems. Her research illustrates how robotic mechanism analysis can support accuracy, controllability, and practical medical applications. [1] [2]

4. Research Profile

Doina Pisla’s research profile is centered on robotics and mechatronics, with particular emphasis on serial and parallel robot kinematics, dynamics, computational techniques, biomedical engineering, and robotic medical systems. Her published work demonstrates application-oriented research involving surgical platforms, rehabilitation mechanisms, motion analysis, modeling, simulation, and robot accuracy assessment. [1] [2] [3]

5. Research Contributions

Her documented contributions include computational approaches for evaluating robotic motion resolution, methods for assessing and calibrating the accuracy of surgical parallel robots, and systematic methodologies for designing rehabilitation robots. Collectively, these studies address important engineering requirements including precision, kinematic performance, calibration, workspace analysis, safety, and application-specific robotic system development. [1] [2] [3]

6. Publications

Selected publications associated with Doina Pisla cover motion resolution in robotic manipulators, AI-assisted accuracy assessment and calibration of the Athena surgical parallel robot, and systematic design of a parallel robotic system for lower-limb rehabilitation. The latter study was published in IEEE Access, volume 8, pages 34522–34537, with DOI 10.1109/ACCESS.2020.2974295. [1] [2] [3]

7. Research Impact

The research has relevance to robotics applications where precision, repeatability, kinematic understanding, and patient-oriented functionality are important. Work on surgical and rehabilitation robots connects computational mechanism analysis with medical technology, while studies of motion resolution and calibration address quantitative performance evaluation. These themes support the development of more accurately characterized robotic systems. [1] [2] [3]

8. Award Suitability

Doina Pisla’s documented publication activity provides a relevant basis for consideration for a Best Researcher Award in robotics and research data analysis. Her work combines computational methods, engineering design, robotic calibration, and biomedical applications. Formal award assessment should additionally consider independently verified publication records, citation indicators, research leadership, and broader scholarly contributions. [1] [2] [3]

9. Conclusion

Doina Pisla’s research demonstrates sustained engagement with robotics, parallel mechanisms, computational modeling, surgical systems, and rehabilitation technologies. The selected publications show a progression from fundamental robotic motion analysis toward accuracy assessment and application-oriented medical robotics. These contributions establish a coherent research profile suitable for scholarly recognition in robotics and engineering research. [1] [2] [3]

11. References

  1. On the computation of motion resolution for robotic manipulators.
    https://www.sciencedirect.com/science/article/pii/S0094114X26001965
  2. AI-Assisted Accuracy Assessment and Calibration of the Athena Surgical Parallel Robot
    https://link.springer.com/chapter/10.1007/978-3-032-30274-8_29
  3. Systematic Design of a Parallel Robotic System for Lower Limb Rehabilitation.https://www.researchgate.net/publication/339331474_Systematic_Design_of_a_Parallel_Robotic_System_for_Lower_Limb_Rehabilitation

Prof. Dr. Xinfeng Zhang | Engineering | Research Excellence Award

Prof. Dr. Xinfeng Zhang | Engineering | Research Excellence Award

Chang'an University | China

Prof. Dr. Xinfeng Zhang is a distinguished academic leader and Dean at the Chang’an University, specializing in autonomous driving, intelligent transportation systems, and new energy vehicles. Holding a PhD in Mechanical Engineering, he has extensive international experience as a visiting scholar at leading institutions. His research focuses on connected automated vehicles, AI-driven transportation, and vehicle reliability. Professor Zhang has led multiple high-impact funded projects and published extensively in top journals. Recognized with prestigious innovation awards, he is an active member of major professional societies and contributes significantly to advancing intelligent mobility and sustainable transportation technologies.

Citation Metrics (Scopus)

300
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232

Documents
27

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9

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Citation Metrics (Scopus)

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