EDBT 2026 Demo / reviewers in the wild / expert
Thomas Geury
dblp:251/6348
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6ranked-venue papers
1as first author
5since 2021 · last 2023
0000-0002-8475-0305ORCID · corroborated
Domains — the database's venue-derived domains; a paper can count in several
Systems, architecture and hardware · 6 · 1 first-author · 5 since 2021
| Year | Publication | Venue | Position |
|---|---|---|---|
| 2023 | Assessing the Impact of EV Charging and Discharging Profiles on T-Type Active Front End Charger LifetimeabstractThis paper aims to assess the lifetime of a T-type active front end (AFE) converter in the context of Grid-to-Vehicle (G2V) and Vehicle-to-Grid (V2G) applications providing various grid services. To achieve this goal, the research paper presents two G2V and three V2G profiles and measures the junction temperature oscillations for the entire mission profile. Then, the temperature profiles are imported into a reliability assessment model to determine each mission profile's impact on the system's reliability. Hakan Polat, Farzad Hosseinabadi, Sajib Chakraborty, Thomas Geury, Mohamed El Baghdadi, Omar Hegazy |
IECON | 4 |
| 2022 | Active Thermal Control of a WBG-based AC-DC Converter Using Dynamic Gate-drive for Lifetime ImprovementabstractIn this paper, an advanced method for implementing active thermal control is proposed that can be helpful for smoothing repetitive junction temperature swing, which is one of the main reasons for wear-out failure in Wide bandgap (WBG)-based (i.e., SiC) power electronics converters (PEC). Utilizing current-source gate-drive, rise/fall (tON/tOFF) time during switching transition can be controlled, resulting in shaping switching losses in the form that can minimize junction temperature swings. The proposed method is implemented for an AC-DC converter and the simulation results validate the performance of the proposed method. It shows that by reducing junction temperature swing by 7°C, the lifetime of the PEC can be improved by a factor of 2. Farzad Hosseinabadi, Hakan Polat, Gamze Egin Martin, Sachin Kumar Bhoi, Sajib Chakraborty, Thomas Geury, Mohamed El Baghdadi, Omar Hegazy |
IECON | 6 |
| 2022 | Comparative Performance Assessment of Predictive Torque Control Strategy for Motor Drive ApplicationsabstractRecently the majority of research in the field of predictive torque control (PTC) focuses on torque ripple and computational burden reduction.The main disadvantage of the traditional PTC strategy is the high computational time requirement, and it restricts the utilization of the PTC in automotive application.In this paper, a new PTC is used based on the modification of conventional PTC that reduces the computational time.At the same time, the modified PTC proposed in this paper reduces semiconductor losses and thermal stress.Moreover, a comparative analysis between conventional PTC and modified PTC has been conducted in terms of driving, electrical and thermal performance.It is found from a simulation study in MATLAB/Simulink® that the modified PTC reduces the switching loss by up to 20%, while the efficiency is increased by more than 5% compared to a conventional PTC.Finally, a reduction in the heatsink temperature response is also noticed during this assessment. Shahid Jaman, Assel Zhaksylyk, Sajib Chakraborty, Dai-Duong Tran, Mohamed El Baghdadi, Thomas Geury, Omar Hegazy |
IECON | 6 |
| 2022 | An Interoperable EMS for the Provision of Grid Services with Hybrid Energy Storage SystemsabstractThis paper proposes an interoperable energy management system (EMS) for grid-connected HESSs, enabling the provision of ancillary services to the grid. Power systems are evolving towards a more renewable and decentralised structure, where energy storage systems (ESS) have emerged as a key energy asset to ensure the power balance and the system stability. In this context, hybrid ESSs (HESS) are an interesting solution because they take advantage of the dynamic properties of different ESS technologies. The proposed EMS structure ensures an adequate internal power allocation between the different ESS packs even when operating at power or state of charge limits. The proposed structure can be easily adapted and combined with specific control functions to provide a wide variety of grid services. Moreover, a power dispatch algorithm is included to allocate the power between the parallel power converters to maximise the system efficiency. The results from two representative use cases demonstrate the effectiveness of the proposed EMS to determine the operating setpoints of a modular HESS and to provide different grid-oriented services. Eneko Unamuno, Hakan Polat, David Cabezuelo, Josu Galarza, Adolfo Anta Martinez, Etienne Toutain, Thomas Geury, Omar Hegazy |
IECON | 7 |
| 2022 | Effects of modularity on the performance and reliability of SiC MOSFET-based active front-end rectifiers in EV charging applicationabstractThis paper compares the overall performance and reliability of modular and non-modular active front-end (AFE) rectifiers in electric vehicle (EV) charging applications, based on the high-fidelity electro-thermal modellling of the AFE rectifiers. The model contains the output characteristics of the SiC MOSFETs and their body diodes, the switching and conducting losses, as well as the effect of junction temperature, operating voltage, and currents. The Foster thermal network is used to estimate the SiC MOSFET junction temperature variation for both cases. A physics-of-failure-based reliability assessment tool is used to evaluate the component level reliability of the SiC MOSFETs based on the junction temperature, and the reliability of the DC link capacitor based on its voltage and temperature. Then the reliability of the converter is evaluated using a series reliability network for the non-modular and modular cases. The efficiency and performance of the systems are evaluated during a five-hour EV charging profile. During this time, the modular system shows an increase in efficiency of 5.3% and a decrease in the total harmonic distortion(THD) of the grid side currents by 71%. The MOSFET losses are reduced by 32%, and the filter losses by 51%. Moreover, in the modular case, the MOSFET junction temperature swings are three times smaller, and the maximum junction temperature is lowered by 7 degrees. This results in a significant increase in the component-level and system-level reliability in the modular case. Assel Zhaksylyk, Mohammed Mahedi Hasan, Sajib Chakraborty, Thomas Geury, Omar Hegazy |
IECON | 4 |
| 2013 | Three-phase power controlled PV current source inverter with incorporated active power filteringabstractA single-stage three-phase Photovoltaic (PV) inverter guaranteeing Maximum Power Point Tracking (MPPT) and nearly unitary Power Factor (PF) in the connection to the Low Voltage (LV) grid, while acting as an Active Power Filter (APF), is developed in this paper. A Current Source Inverter (CSI) with an inductive DC link is used to connect the PV array to the grid, and the MPPT is achieved controlling directly the power in the DC link. Based on the power balance of the whole system, the grid current references are generated in a dq frame synchronized with the grid guaranteeing the mitigation of current harmonics produced by a non-linear load connected to the grid. Simulation results are presented to confirm the proper operation of the system. Thomas Geury, Sonia Pinto, Johan J. C. Gyselinck |
IECON | 1 |