Results 121 to 130 of about 216,243 (209)
Some of the next articles are maybe not open access.

A Robust Voltage Control of DAB Converter With Super-Twisting Sliding Mode Approach

IEEE Journal of Emerging and Selected Topics in Industrial Electronics, 2023
This article presents a supertwisting sliding mode control (ST-SMC) for the isolated dc-dc bi-directional dual active bridge (DAB) power converter for enhanced output voltage regulation. The sliding mode control (SMC) is well-known for its robustness and
Nishit Tiwary   +4 more
semanticscholar   +1 more source

Analysis and Design of Bidirectional Parallel-Series DAB-Based Converter

IEEE transactions on power electronics, 2023
Unprecedented expansion of renewable, energy storage, and fast charger system applications has diversified the bidirectional converter designs over the past decade.
E. Serban, Cosmin Pondiche, M. Ordonez
semanticscholar   +1 more source

Voltage-Balancing Dual-Active-Bridge (VB-DAB) Converter for Bipolar DC Distribution System

IEEE transactions on industrial electronics (1982. Print), 2023
This article proposes a new voltage-balancing dual-active-bridge (VB-DAB) converter for the bipolar dc distribution system. The proposed converter comprises the same components as those of the conventional DAB converter, and it integrates functions of a ...
Minsu Lee   +4 more
semanticscholar   +1 more source

A Quasi-Two-Stage Isolated Bidirectional Buck-DAB Converter for Wide Input Voltage Range

IEEE transactions on power electronics, 2023
In this article, a quasi-two-stage buck-DAB (QBDAB) converter is proposed for improving the performance of the conventional dual active bridge (DAB) solution under a wide voltage range.
Zhengmei Lu   +4 more
semanticscholar   +1 more source

Active Damping Method for LC-DAB System Based on a Power-Based Impedance Model

IEEE transactions on power electronics, 2023
A cascaded system, consisting of an LC filter and a dual active bridge (DAB), can exhibit certain instability due to terminal impedance mismatch. In this regard, the existing impedance models of DAB are not convenient for designing the active damping ...
Yangfan Chen, Yu Zhang, Erya Qu, Meng He
semanticscholar   +1 more source

A Zero-Backflow-Power EPS Control Scheme With Multiobjective Coupled-Relationship Optimization in DAB-Based Converter

IEEE Journal of Emerging and Selected Topics in Power Electronics, 2022
Dual-active-bridge (DAB) based dc–dc converter is usually chosen for energy conversion. In this article, there exist many coupled relationships such as the controversy between local minimum current stress and transmission power, which influence ...
Jiachen Tian   +5 more
semanticscholar   +1 more source

Mode Analysis, Transformer Saturation, and Fault Diagnosis Technique for an Open-Circuit Fault in a Three-Phase DAB Converter

IEEE transactions on power electronics, 2023
The three-phase dual active bridge (DAB3) is a popular dc–dc converter topology for high-power applications, capable of high-efficiency bidirectional power transfer with galvanic isolation.
S. Rastogi   +3 more
semanticscholar   +1 more source

EV Battery Charging using DAB DC-DC Converter with EPS and DPS modulations

2023 IEEE International Students' Conference on Electrical, Electronics and Computer Science (SCEECS), 2023
A Dual active bridge (DAB) DC-DC converter comprises two active H-bridges interfaced by a high-frequency transformer (HFT). There are several points of interest in a DAB DC-DC converter as far as the charging application is concerned, such as ...
Mridul Mishra, I. Sarkar
semanticscholar   +1 more source

An Input-Oriented Power Sharing Control Scheme With Fast-Dynamic Response for ISOP DAB DC–DC Converter

IEEE transactions on power electronics, 2022
With some advantages, such as electric isolation, high efficiency, and fast dynamic response, the input-series output-parallel (ISOP) dual-active-bridge (DAB) dc–dc converter has been regarded as one of the most promising candidates for connecting the ...
Nie Hou   +5 more
semanticscholar   +1 more source

DAB Converter for EV Onboard Chargers Using Bare-Die SiC MOSFETs and Leakage-Integrated Planar Transformer

IEEE Transactions on Transportation Electrification, 2021
This article discusses electrical design optimization of a 3.3 kW, 380 V to 250–380 V, 500 kHz, dual-active-bridge dc–dc converter for onboard chargers, operated with constant-power (CP) charging.
Yongwan Park, S. Chakraborty, A. Khaligh
semanticscholar   +1 more source

Home - About - Disclaimer - Privacy