Master of Mechanical Engineering
Sept. 2024 – June 2026 (expected)
Cumulative GPA: 4.3/4.3
Exchange researcher
Sept. 2023 – Feb. 2024
Semester GPA: 3.9/4.0
Bachelor of Mechanical Engineering
Sept. 2020 – June 2024
Cumulative GPA: 3.8/4.3
June 2024 – Sept. 2024
Phone modules
Analyzed critical flaws in assembly process, identifying root causes and proposing solutions to reduce manufacture variability.
Developed SPC-based protocols and automated measurement programs, achieving micron-level precision and reducing training time by 80% while enhancing cross-team consistency.
Reduced systematic error by 50% in analysis of athermalization failure in optical components by utilizing high-end measurement equipment and identifying key contributing factors after environmental testing.
Facial Morphological Deformation Prediction after Orthognathic Surgery using Meshless Method (in progress).
Address limitations of traditional soft tissue deformation simulation methods (mass-spring, mass-tensor, finite element) such as volume invariance, grid distortion, and ill-conditioning.
Develop soft tissue prediction software implemented the Reproducing Kernel Particle Method to overcome challenges and achieve more accurate and stable simulations by C++.
Capability studies reader (2024) | Excel, VBA
Implemented features for tolerance analysis, control chart generating, and ANOVA GRR analysis using both measured and Monte Carlo simulated data
Dynamic calculation of SPC constants, eliminating reliance on the "Data Analysis ToolPak," enhancing accessibility and ease of use.
Designed a complete workflow, from data input or simulation to control chart visualization, showcasing a holistic understanding of statistical process control.
Automated complex statistical calculations and control chart generation using only Excel formulas, minimizing manual intervention and maximizing efficiency.
5-axis robotic arm implanted Hexapod (2023) | C++, SolidWorks, MATLAB
Resolved deformation issue due to motor heat by redesigning the motor mount by SolidWorks.
Developed and integrate proprietary full-analytical inverse kinematics algorithms on an 18-DOF hexapod by C++.
Optimized and reduced algorithms processing time by 90% compared to any open-source projects online.
Built a simulation environment and control interface using OpenGL with hardware model integration.
Reverse Engineering (2022).
Recreate and rebuilt old competition robots in SolidWorks with simulation and analysis.
Studies on Thermal Protection System Materials: The case of Nose Cone in Re-Entry Shuttle (2021).
Analyzed material selection by simulating temperatures condition during atmospheric reentry by ANSYS and SEC selector.
Programing, Data Analysis, Visualization
C++, Python, MATLAB, R, VBA
Modeling
SolidWorks, NX, AutoCAD, Creo
Simulation
ANSYS, ABAQUS
Rendering
SolidWorks Visualize, Blender
Graphical Design
Adobe illustrator, Photoshop, InDesign
Class Representative
Sept. 2020 - Aug. 2023
“Start-Up Accelerator Programs” by NCKU Innovation Headquarters
Accepted by “NCKU Dreams Come True Program”, eligible for 100,000 NTD sponsorship, exploring the potential commercial value of Hexapod.
June 2023
Mechanical Engineering Department Single Subject Academic Excellence
ENGINEERING GRAPHICS (1)
Feb. 2021
MATERIAL SELECTION AND DESIGN
Feb. 2022
PROGRAMMING DESIGN
Sept. 2023