Johan Persson
Papers
4
Total Citations
44
H-Index
4
About
Johan Persson is a researcher specializing in multidisciplinary design optimization (MDO) and advanced engineering design methodologies, with a particular focus on industrial robotics. His work has made significant contributions to the automated design and optimization of modular industrial robots, pioneering frameworks that seamlessly integrate high-level CAD templates, physics-based simulation models, and structural analysis tools into cohesive design workflows. Persson's most influential contribution, "Multidisciplinary Design Optimization of Modular Industrial Robots by Utilizing High Level CAD Templates" (2012, 19 citations), demonstrates how automated geometry modeling can be combined with high-fidelity physical simulations to streamline complex robot design processes. Building on earlier foundational work from 2011 (12 citations), he established robust MDO frameworks that bridge the gap between computational modeling and practical engineering applications. His research further extends to specialized subsystem optimization, including balancing mechanisms for industrial robots. His 2015 framework explored mechanical, pneumatic, and hydropneumatic balancing concepts (9 citations), complemented by dedicated optimization work on hydro-pneumatic balancing cylinders (2014). Collectively, Persson's research has meaningfully advanced how engineers approach the design of complex robotic systems, promoting efficiency, integration, and performance-driven automation in industrial robot development.
Research Focus
Key Achievements
Top Papers
- 1
- 2Multidisciplinary Design Optimization of Modular Industrial Robots12 citations · 2011
- 3
- 4