Wireless charging systems for electric vehicles

M Amjad, M Farooq-i-Azam, Q Ni, M Dong… - … and Sustainable Energy …, 2022 - Elsevier
Electric vehicles require fast, economical and reliable charging systems for efficient
performance. Wireless charging systems remove the hassle to plug in the device to be …

Innovative shielding technique for wireless power transfer systems

A Canova, F Corti, A Laudani, GM Lozito… - IET Power …, 2024 - Wiley Online Library
Abstract The High Magnetic Passive Loop (HMCPL) technique is proposed as an innovative
passive shielding system to mitigate the undesired dispersion of the magnetic field produced …

Simultaneous wireless power and data transfer: Overview and application to electric vehicles

F Corti, A Reatti, MC Piccirilli, F Grasso… - … on Circuits and …, 2020 - ieeexplore.ieee.org
A Wireless Power Transfer System (WPTS) is basically constituted by two main parts: the
primary side and the secondary side. Beyond the application related with the power transfer …

[HTML][HTML] Optimal coupler topology for dynamic wireless power transfer for electric vehicle

K Kadem, M Bensetti, Y Le Bihan, E Labouré… - Energies, 2021 - mdpi.com
Recently, the number of electric vehicles (EVs) is increasing due to the decline of oil
resources and the rising of greenhouse gas emissions. However, EVs have not received full …

Component design procedure for LCC‐S wireless power transfer systems based on genetic algorithms and sensitivity analysis

F Corti, M Intravaia, A Reatti, F Grasso… - IET Power …, 2024 - Wiley Online Library
This paper introduces a novel approach for designing a Wireless Power Transfer (WPT)
system with LCC‐S compensation. Since WPT systems operate under resonant conditions …

Design of a misalignment-tolerant inductor–capacitor–capacitor-compensated wireless charger for roadway-powered electric vehicles

M Abdulhameed, E ElGhanam, AH Osman, MS Hassan - Sustainability, 2024 - mdpi.com
Dynamic wireless charging (DWC) systems enable electric vehicles (EVs) to receive energy
on the move, without stop** at charging stations. Nonetheless, the energy efficiency of …

Evaluation of additive manufacturing for wireless power transfer applications

F Corti, A Reatti, L Pugi, GM Lozito… - IEEE Transactions …, 2023 - ieeexplore.ieee.org
Additive manufacturing (AM) has emerged as an economical and feasible technology for
creating industrial components. This article evaluates the use of AM for inductive wireless …

A hybrid charger of conductive and inductive modes for electric vehicles

VB Vu, JM González-González, V Pickert… - IEEE Transactions …, 2020 - ieeexplore.ieee.org
Electric vehicles (EVs) are gaining more and more user acceptances due to their clean,
efficient, and environmentally friendly nature. Currently, most commercial EVs use …

Zero voltage switching condition in class-e inverter for capacitive wireless power transfer applications

F Corti, A Reatti, YH Wu, D Czarkowski, S Musumeci - Energies, 2021 - mdpi.com
This paper presents a complete design methodology of a Class-E inverter for capacitive
wireless power transfer (CWPT) applications, focusing on the capacitance coupling …

A wireless DC motor drive using LCCC-CCL compensated network with bidirectional motion capability

H Liu, H Zhou, Q Deng, W Hu, X Gao… - IEEE Transactions on …, 2022 - ieeexplore.ieee.org
This paper proposes an LCCC and CCL compensated wireless servo motor control circuitry
utilizing the merits of fundamental and third harmonic. With this circuitry, the motor side …