Skip to content

Author

Ó. Lucía

1 paper indexed here

We haven’t gathered this author’s papers yet. Follow them and we’ll fetch their work.

Not the right person? Other researchers publish under this name.

Open access 2026

Cost-Effective and High-Power-Density Nonisolated Bidirectional On-Board Charger

This article presents a nonisolated, single-stage, bidirectional on-board charger (OBC) for electric vehicles based on a differential Y-rectifier with one phase-inductor per phase, enabling seamless operation on single- and three-phase grids. A straightforward, unchanged modulation, and current-control strategy is retained across 1ϕ/3ϕ operation, yielding mode-invariant device stresses and efficiency, and supporting equal rated power in both configurations. The topology features a markedly reduced component count and a common reference coincident with the high voltage (HV) battery, simplifying gate-drive and sensing circuitry, and lowering isolation requirements in the control path. In addition, the converter integrates a buck-type power pulsation buffer (PPB) that compensates the 2·fac ripple otherwise imposed on the battery, thereby allowing a compact energy buffer and high power density. Grid-compliant operation is ensured under Ubatt>Ûac (practically ∼400 V), targeting modern 800 V battery platforms. The proposed converter is tested by means of a hardware prototype rated at 11 kW that operates over 85–256 Vrms, 40–65 Hz, with battery voltages ≥ 400 V (tested up to 850 V). The design achieves 10.2 kW/L power density and peak efficiencies > 97%, with PF ≥ 0.99 and THDi ≤ 5%. Experimental results validate operation in both grid configurations and confirm invariant device rms/peak stresses, identical control, and equivalent efficiency between 1ϕ and 3ϕ operation, establishing a cost-effective, high-power-density alternative to two-stage OBCs.

H. Sarnago, Ó. Lucía · 0 citations