Resumen
Recently, transport electrification has undergone a dramatic expansion. This is generating an increasing demand for powertrain reliability. Furthermore, the recent adoption of wide bandgap (WBG) devices, pushes this need even more, particularly for power electronics. This manuscript addresses this need by combining simple and computationally light signal-based fault detection and diagnosis (FDD) methods. These are tested online by simulating electric vehicle (EV) three-phase inverter faults during standardized driving cycles. Simulations are carried out including a three-phase interior permanent magnet synchronous machine (IPMSM) model and a state of the art second order sliding mode control (SMC) with four quadrant capability.
| Idioma original | Inglés |
|---|---|
| Título de la publicación alojada | 2021 IEEE Vehicle Power and Propulsion Conference, VPPC 2021 - ProceedingS |
| Editorial | Institute of Electrical and Electronics Engineers Inc. |
| ISBN (versión digital) | 9781665405287 |
| DOI | |
| Estado | Publicada - 2021 |
| Publicado de forma externa | Sí |
| Evento | 18th IEEE Vehicle Power and Propulsion Conference, VPPC 2021 - Virtual, Gijon, Espana Duración: 25 oct 2021 → 28 oct 2021 |
Serie de la publicación
| Nombre | 2021 IEEE Vehicle Power and Propulsion Conference, VPPC 2021 - ProceedingS |
|---|
Conferencia
| Conferencia | 18th IEEE Vehicle Power and Propulsion Conference, VPPC 2021 |
|---|---|
| País/Territorio | Espana |
| Ciudad | Virtual, Gijon |
| Período | 25/10/21 → 28/10/21 |
ODS de las Naciones Unidas
Este resultado contribuye a los siguientes Objetivos de Desarrollo Sostenible
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ODS 7: Energía asequible y no contaminante
Huella
Profundice en los temas de investigación de 'Online Signal-Based Fault Detection and Diagnosis of EV Inverter during WLTP Driving Cycle'. En conjunto forman una huella única.Citar esto
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