Davide Cittanti

About Davide Cittanti

Davide Cittanti, With an exceptional h-index of 14 and a recent h-index of 14 (since 2020), a distinguished researcher at Politecnico di Torino, specializes in the field of Electrical Engineering, Power Electronics, Drive Control.

His recent articles reflect a diverse array of research interests and contributions to the field:

Analysis, Design and Experimental Assessment of a High Power Density Ceramic DC-Link Capacitor for a 800 V 550 kVA Electric Vehicle Drive Inverter

Optimal Air Gap Length Design in Powder Core Inductors

Optimum Air Gap Selection in Powder Core Inductors

Detailed modeling and in-situ calorimetric verification of three-phase sparse npc converter power semiconductor losses

Analysis and Conceptualization of a Single-Phase Buck-Boost Integrated EV On-Board Charger Based on a Double Bridge Inverter Drive System

Design and Testing of an Automotive Compliant 800V 550 kVA SiC Traction Inverter with Full-Ceramic DC-Link and EMI Filter

Analysis, Design and Control of a Modular Full-Si Converter Concept for Electric Vehicle Ultra-Fast Charging

Analysis and Conceptualization of a 400V 100 kVA Full-GaN Double Bridge Inverter for Next-Generation Electric Vehicle Drives

Davide Cittanti Information

University

Position

PhD Student

Citations(all)

434

Citations(since 2020)

424

Cited By

102

hIndex(all)

14

hIndex(since 2020)

14

i10Index(all)

18

i10Index(since 2020)

18

Email

University Profile Page

Google Scholar

Davide Cittanti Skills & Research Interests

Electrical Engineering

Power Electronics

Drive Control

Top articles of Davide Cittanti

Analysis, Design and Experimental Assessment of a High Power Density Ceramic DC-Link Capacitor for a 800 V 550 kVA Electric Vehicle Drive Inverter

IEEE Transactions on Industry Applications

2023/8/22

Optimal Air Gap Length Design in Powder Core Inductors

IEEE Transactions on Magnetics

2023/6/26

Optimum Air Gap Selection in Powder Core Inductors

2023/5/15

Detailed modeling and in-situ calorimetric verification of three-phase sparse npc converter power semiconductor losses

IEEE Journal of Emerging and Selected Topics in Power Electronics

2023/3/14

Davide Cittanti
Davide Cittanti

H-Index: 6

Analysis and Conceptualization of a Single-Phase Buck-Boost Integrated EV On-Board Charger Based on a Double Bridge Inverter Drive System

2022/10/9

Design and Testing of an Automotive Compliant 800V 550 kVA SiC Traction Inverter with Full-Ceramic DC-Link and EMI Filter

2022/10/9

Analysis, Design and Control of a Modular Full-Si Converter Concept for Electric Vehicle Ultra-Fast Charging

2022/6/30

Davide Cittanti
Davide Cittanti

H-Index: 6

Analysis and Conceptualization of a 400V 100 kVA Full-GaN Double Bridge Inverter for Next-Generation Electric Vehicle Drives

2022/6/15

High-performance digital multiloop control of LLC resonant converters for EV fast charging with LUT-based feedforward and adaptive gain

IEEE Transactions on Industry Applications

2022/5/27

A simplified hard-switching loss model for fast-switching three-level T-type SiC bridge-legs

Electronics

2022/5/25

Davide Cittanti
Davide Cittanti

H-Index: 6

Radu Bojoi
Radu Bojoi

H-Index: 31

Analysis and design of a high power density full-ceramic 900 V DC-link capacitor for a 550 kVA electric vehicle drive inverter

2022/5/15

Analysis and Conceptualization of a 800 V 100 kVA Full-GaN Three-Level Flying Capacitor Inverter for Next-Generation Electric Vehicle Drives

2022/5/15

New FOM-based performance evaluation of 600/650 V SiC and GaN semiconductors for next-generation EV drives

IEEE Access

2022/5/12

Davide Cittanti
Davide Cittanti

H-Index: 6

Analysis and performance evaluation of a three-phase sparse neutral point clamped converter for industrial variable speed drives

Electrical Engineering

2022/4

Davide Cittanti
Davide Cittanti

H-Index: 6

Radu Bojoi
Radu Bojoi

H-Index: 31

PWM-induced losses in electrical machines: An impedance-based estimation method

2021/10/31

Design and Experimental Assessment of a 60 kW All-Si Three-Phase Six-Leg T-Type Rectifier for Electric Vehicle Ultra-Fast Charging

2021/10/7

Davide Cittanti
Davide Cittanti

H-Index: 6

Radu Bojoi
Radu Bojoi

H-Index: 31

Three-level unidirectional rectifiers under non-unity power factor operation and unbalanced split DC-Link loading: Analytical and experimental assessment

Energies

2021/8/25

Full digital control and multi-loop tuning of a three-level T-type rectifier for electric vehicle ultra-fast battery chargers

Electronics

2021/6/17

Design space optimization of a three-phase LCL filter for electric vehicle ultra-fast battery charging

Energies

2021/2/27

Electric vehicle ultra-fast battery chargers: a boost for power system stability?

World Electric Vehicle Journal

2021/1/23

See List of Professors in Davide Cittanti University(Politecnico di Torino)

Co-Authors

academic-engine