Prof Philip F. Yuan | Robotic Fabrication | Best Researcher Award

Prof Philip F. Yuan | Robotic Fabrication | Best Researcher Award

Prof Philip F. Yuan , CAUP, Tongji University, China

Prof Philip F. Yuan is academic and researcher in the field of renewable energy, holds a PhD in Bio systems Engineering from Kangwon National University, South Korea. His academic journey has been marked by a profound dedication to advancing solar energy technologies, specifically in solar thermal harvesting and its integration into agricultural and architectural applications.

 

Professional Profiles:

Scopus

Yuan, Philip F.

Info:

Tongji University, Shanghai, China
56057067100

šŸ“–Ā Publications Top Note :

Agent-Based Principal Strips Modeling for Freeform Surfaces in Architecture
Chai, H., Orozco, L., Kannenberg, F., Menges, A., Yuan, P.F.
Nexus Network Journal, 2024, 26(2), pp. 369ā€“396
Explores innovative modeling techniques in architecture utilizing agent-based methods.

Bioinspired Sensors and Applications in Intelligent Robots: A Review
Zhou, Y., Yan, Z., Yang, Y., Yuan, P.F., He, B.
Robotic Intelligence and Automation, 2024, 44(2), pp. 215ā€“228
A comprehensive review of bioinspired sensor technologies and their applications in robotics.

FloatArch: A Cable-Supported, Unreinforced, and Re-Assemblable 3D-Printed Concrete Structure Designed Using Multi-Material Topology Optimization
Li, Y., Wu, H., Xie, X., Yuan, P.F., Xie, Y.M.
Additive Manufacturing, 2024, 81, 104012
Presents a pioneering design in 3D-printed concrete structures optimized for reusability and sustainability.

Structural Performance-Based 3D Concrete Printing for an Efficient Concrete Beam
Wu, H., Li, Y., Xie, X., Gao, X., Yuan, P.F.
Sustainable Development Goals Series, 2024, Part F2790, pp. 343ā€“354
Discusses advancements in 3D printing for creating efficient concrete beams.

Research on 3D Printing Craft for Flexible Mass Customization: The Case of Chengdu Agricultural Expo Center
Gao, T., Gu, S., Zhang, L., Yuan, P.F.
Sustainable Development Goals Series, 2024, Part F2790, pp. 465ā€“480
Examines flexible customization in 3D printing through a case study of an agricultural expo center.

Preface
Yan, C., Chai, H., Sun, T., Yuan, P.F.
Computational Design and Robotic Fabrication, 2024, Part F2072
Introduction to the latest volume focusing on computational design and robotic fabrication.

The Use of Normative Energy Calculation for Natural Ventilation Performance-Driven Urban Block Morphology Generation
Li, W., Xu, X., Makvandi, M., Sun, Z., Yuan, P.F.
Computational Design and Robotic Fabrication, 2024, Part F2072, pp. 315ā€“328
Investigates energy-efficient urban design through computational methods.

A Parametric Approach Towards Carbon Net Zero in Agricultural Planning
Yueyang, W., Yuan, P.F.
Computational Design and Robotic Fabrication, 2024, Part F2072, pp. 305ā€“314
Focuses on achieving carbon neutrality in agricultural planning using parametric design techniques.

ISOMORPHISM: Stylized Translations of 2D Prototype in Additive Clay Printing
Gong, L., Yuan, P.F.
Computational Design and Robotic Fabrication, 2024, Part F2072, pp. 515ā€“525
Explores the translation of 2D designs into 3D printed clay structures.

Practical Application of Multi-Material Topology Optimization to Performance-Based Architectural Design of an Iconic Building
Li, Y., Ding, J., Zhang, Z., Yuan, P.F., Xie, Y.M.
Composite Structures, 2023, 325, 117603
Applies multi-material optimization in creating high-performance architectural designs.

Prof Dr. Claudio Urrea | automation and control | Best Researcher Award

Prof Dr. Claudio Urrea| autndomation a control | Best Researcher Award

Prof Dr. Claudio, University of Santiago of Chile, Chile

Prof Dr. Claudio Urrea is academic and researcher in the field of renewable energy, holds a PhD in Bio systems Engineering from Kangwon National University, South Korea. His academic journey has been marked by a profound dedication to advancing solar energy technologies, specifically in solar thermal harvesting and its integration into agricultural and architectural applications.

 

Professional Profiles:

Scopus

ORCID

šŸŽ“ Educational and Professional Background:

šŸ” Post-Doctoral Degree
Research Topic: Diagnostique de SystĆØmes TolĆ©rants aux DĆ©fauts (Diagnosis of Fault-Tolerant Systems). UniversitĆ© dā€™Aix-Marseille III, Marseilles, France.šŸŽ“ Docteur in Automatique et ProductiqueĀ  Laboratoire dā€™Automatique de Grenoble (LAG), Institut National Polytechnique de Grenoble (INPG), France. Specialization: Automatique et Productique (Automation and Production). Distinction: TrĆØs Honorable. PhD in Engineering SciencesĀ  Electrical Engineering Department (DIE), University of Santiago of Chile (USACh). Specialization: Automation. Distinction: Approved with highest honors. Ā Master in Engineering Sciences DIE, USACh, Chile. Specialization: Electrical Engineering.

šŸ‘Øā€šŸ« Working Experience:

Academic Advisor
University of Santiago of Chile, representative of the Full Professors. Postgraduate Vice-Chancellor Vice-Rectory of Postgraduate, University of Santiago of Chile. President of the Postgraduation Superior Council University of Santiago of Chile. President of the Assessment Commission for Postgraduate Programs University of Santiago of Chile. President of the Academic Performance Evaluation and Qualification Committee Electrical Engineering Department, University of Santiago of Chile.

šŸ“– PublicationsĀ  Top Note :

Modeling, design and control of a 4-arm delta parallel manipulator employing type-1 and interval type-2 fuzzy logic-based techniques for precision applications

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A Multimodal Fusion System for Object Identification in Point Clouds with Density and Coverage Differences

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Fast Rock Detection in Visually Contaminated Mining Environments Using Machine Learning and Deep Learning Techniques

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A Novel Robotic Controller Using Neural Engineering Framework-Based Spiking Neural Networks

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Improving Exoskeleton Functionality: Design and Comparative Evaluation of Control Techniques for Pneumatic Artificial Muscle Actuators in Lower Limb Rehabilitation and Work Tasks

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Fuzzy Control Strategies Development for a 3-DoF Robotic Manipulator in Trajectory Tracking

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Model of the response time of the variable-frequency drive with PadƩ approximant to test the control velocity of a conveyor belt

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Model of the response time of the variable-frequency drive with PadƩ approximant to test the control velocity of a conveyor belt

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Design, Simulation, Implementation, and Comparison of Advanced Control Strategies Applied to a 6-DoF Planar Robot

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