| 2021 | IECON | Influence of the Magnetic Load on High Speed Synchronous Reluctance Machines Design. | Gianvito Gallicchio, Marco Palmieri, Francesco Cupertino, Mauro Di Nardo, Michele Degano, Chris Gerada |
| 2019 | IECON | Operation Analysis and Comparison of T-type NPC Si IGBT and SiC MOSFET Inverter-Based Highspeed Drives. | Jelena Loncarski, Vito Giuseppe Monopoli, Riccardo Leuzzi, Francesco Cupertino |
| 2015 | IECON | End barrier shape optimizations and sensitivity analysis of synchrnous reluctance machines. | Mauro Di Nardo, Michele Degano, Michael Galea, Chris Gerada, Marco Palmieri, Francesco Cupertino, Nicola Bianchi, David Gerada |
| 2015 | IECON | Comparison of multi-physics optimization methods for high speed synchrnous reluctance machines. | Mauro Di Nardo, Michael Galea, Christopher Gerada, Marco Palmieri, Francesco Cupertino, Salem Mebarki |
| 2014 | IECON | High-speed scalability of synchronous reluctance machines considering different lamination materials. | Marco Palmieri, Maurizio Perta, Francesco Cupertino, Gianmario Pellegrino |
| 2013 | IECON | Experimental evaluation of current carrying capacity of printed circuit stator coils. | Francesco Cupertino, Stefano Ettorre |
| 2012 | IECON | Torque production capabilities of electrical machines with planar windings. | Francesco Cupertino, Stefano Ettorre |
| 2007 | CEC | Compact GAs for neural network online training in tubular linear motor control. | Francesco Cupertino, Ernesto Mininno, David Naso, Biagio Turchiano, Luigi Salvatore |
| 2006 | CEC | Elitist Compact Genetic Algorithms for Induction Motor Self-tuning Control. | Francesco Cupertino, Ernesto Mininno, David Naso |
| 2004 | SMC | A neural visual servoing in uncalibrated environments for robotic manipulators. | Francesco Cupertino, Vincenzo Giordano, Ernesto Mininno, David Naso, Biagio Turchiano |
| 2004 | SMC | A hybrid approach to adaptive fuzzy control based on genetic algorithms. | Francesco Cupertino, Vincenzo Giordano, David Naso, Biagio Turchiano |
| 2002 | CEC | Design of cascaded controllers for DC drives using evolutionary algorithms. | Francesco Cupertino, David Naso, Luigi Salvatore, Biagio Turchiano |