학술논문

Performance Investigation of 24-lot/10-pole Synchronous Reluctance Machine in Integrated Onboard Battery Charger for EV Applications
Document Type
Conference
Source
2024 4th International Conference on Smart Grid and Renewable Energy (SGRE) Smart Grid and Renewable Energy (SGRE), 2024 4th International Conference on. :1-6 Jan, 2024
Subject
Power, Energy and Industry Applications
Battery chargers
Torque
Propulsion
Traction motors
Power capacitors
Finite element analysis
Reluctance motors
Electric Vehicles
Multiphase Machines
Synchronous Reluctance Motors
Fractional Slot Concentrated Winding
Finite Element Analysis
Language
Abstract
This paper proposes an integrated onboard battery charger (IOBC) for electric vehicles (EVs) employing a six-phase synchronous reluctance motor (SynRm) equipped with fractional slot concentrated winding (FSCW) as the traction motor of the drivetrain. IOBC is more preferable than traditional onboard battery chargers (OBC) as they reduce the weight and cost of the EV through making use of the powertrain elements in the charging process. Only a few FSCW slot/pole combinations show satisfactory performance for the SynRm, among which 24-slot/10-pole is considered. As a result, this paper presents a preliminary design for a six-phase SynRm with the proposed slot/pole combination. Then, the machine is analyzed under propulsion and charging modes through finite element analysis (FEA) to validate its performance.