Oskars Bormanis
Papers
4
Total Citations
30
H-Index
3
About
Oskars Bormanis is a researcher whose work sits at the intersection of industrial robotics, power electronics, and energy efficiency. His primary research areas include DC microgrid power management, industrial robot energy consumption modeling, and the electro-thermal analysis of robotic drive systems. A key contribution is his pioneering work on power smoothing for industrial DC microgrids using supercapacitor storage, specifically tailored for robotic manufacturing applications—a paper that has garnered 14 citations for its novel approach to converting conventional AC systems. Bormanis has also advanced the field of virtual commissioning by developing energy consumption models that interface MATLAB with external applications, enabling more accurate simulation of robotic processes. His more recent work focuses on the thermal stress and lifetime estimation of IGBT power modules in industrial robots, introducing mission-profile-based models that link robot movement directly to semiconductor junction temperature. With a total of 30 citations across his most-cited works, Bormanis’s research provides critical insights for predictive maintenance and cost-saving in automated manufacturing, bridging the gap between power electronics reliability and robotic system design.
Research Focus
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Top Papers
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