Works (7)

Updated: November 20th, 2023 13:29

2022 journal article

Passive Capacitor Voltage Balancing of SiC-Based Three-Level Dual-Active-Bridge Converter Using Hybrid NPC-Flying Capacitor Structure

IEEE TRANSACTIONS ON POWER ELECTRONICS, 37(4), 4183–4194.

By: H. Feng*, F. Teng n, O. Montes n, M. Awal*, M. Bipu n, I. Husain n, S. Lukic n

author keywords: Capacitors; Voltage; Topology; Modulation; Voltage control; Switches; Bridge circuits; Dual-active-bridge (DAB) converter; flying capacitor (FC); medium-voltage (MV) converter; neutral-point-clamped (NPC) topology; voltage balancing
UN Sustainable Development Goal Categories
7. Affordable and Clean Energy (Web of Science; OpenAlex)
Sources: Web Of Science, NC State University Libraries
Added: January 10, 2022

2021 journal article

A Coupling-Insensitive X-Type IPT System for High Position Tolerance

IEEE TRANSACTIONS ON INDUSTRIAL ELECTRONICS, 68(8), 6917–6926.

By: H. Feng n, A. Dayerizadeh n & S. Lukic n

author keywords: Topology; Couplings; Network topology; Impedance; Magnetic flux; Magnetic resonance; Switches; Compensation topology; inductive power transfer (IPT); position tolerance; X-Type
TL;DR: By introducing the concept and derivation principle for the coupling-insensitive compensation topologies, the X-type network is presented to provide self-regulation ability for primary coil current against variable coupling, thereby enabling steady power transfer in a highly dynamic environment. (via Semantic Scholar)
UN Sustainable Development Goal Categories
7. Affordable and Clean Energy (Web of Science; OpenAlex)
Sources: Web Of Science, NC State University Libraries, ORCID
Added: May 4, 2021

2020 journal article

Advances in High-Power Wireless Charging Systems: Overview and Design Considerations

IEEE TRANSACTIONS ON TRANSPORTATION ELECTRIFICATION, 6(3), 886–919.

By: H. Feng n, R. Tavakoli n, O. Onar* & Z. Pantic n

author keywords: High-power wireless chargers; transportation electrification; wireless charging systems
TL;DR: Comparisons among different solutions and design considerations are summarized to present the essential elements and technology roadmap that will be necessary to support large-scale deployment of high-power wireless charging systems. (via Semantic Scholar)
UN Sustainable Development Goal Categories
Sources: Web Of Science, NC State University Libraries
Added: October 12, 2020

2020 journal article

Capacitor Voltage Balancing for Neutral Point Clamped Dual Active Bridge Converters

IEEE TRANSACTIONS ON POWER ELECTRONICS, 35(10), 11267–11276.

By: M. Awal n, M. Bipu n, O. Montes n, H. Feng n, I. Husain n, W. Yu n, S. Lukic n

author keywords: Capacitors; Switches; Bridge circuits; Voltage control; Topology; Voltage measurement; Legged locomotion; Capacitor voltage balancing; dual active bridge (DAB); neutral point diode clamped (NPC); neutral point balancing
TL;DR: A voltage balancing controller, which is independent of power flow direction and does not require adjustments of active voltage vectors through the modulator, is proposed and demonstrated through analysis, simulation, and hardware experiments using a laboratory prototype. (via Semantic Scholar)
UN Sustainable Development Goal Categories
7. Affordable and Clean Energy (Web of Science; OpenAlex)
Sources: Web Of Science, NC State University Libraries
Added: July 20, 2020

2020 article

Dynamic Wireless Charging: Reflexive Field Containment Using Saturable Inductors

IEEE TRANSACTIONS ON INDUSTRY APPLICATIONS, Vol. 56, pp. 1784–1792.

By: A. Dayerizadeh n, H. Feng n & S. Lukic n

author keywords: Dynamic wireless power transfer; inductive power transfer; saturable inductor; wireless power transfer
UN Sustainable Development Goal Categories
7. Affordable and Clean Energy (Web of Science; OpenAlex)
Sources: Web Of Science, NC State University Libraries, ORCID
Added: April 20, 2020

2020 journal article

Reconfigurable Topology for IPT System Maintaining Stable Transmission Power Over Large Coupling Variation

IEEE TRANSACTIONS ON POWER ELECTRONICS, 35(5), 4915–4924.

By: Y. Chen, B. Yang*, Q. Li*, H. Feng n, X. Zhou*, Z. He*, R. Mai*

author keywords: Topology; Couplings; Fluctuations; Power generation; Impedance; Switches; Capacitors; Inductive power transfer (IPT); large coupling variation; reconfigurable topology; stable transmission power
TL;DR: A new approach based on reconfigurable compensation topology is proposed to withstand the coupling variation for an IPT system with stable transmission power, and a 400-W prototype is built to verify the validity of the proposed approach. (via Semantic Scholar)
UN Sustainable Development Goal Categories
7. Affordable and Clean Energy (Web of Science; OpenAlex)
Sources: Web Of Science, NC State University Libraries
Added: May 18, 2020

2019 journal article

Extreme Fast Charging of Electric Vehicles: A Technology Overview

IEEE TRANSACTIONS ON TRANSPORTATION ELECTRIFICATION, 5(4), 861–878.

By: H. Tu n, H. Feng n, S. Srdic n & S. Lukic n

author keywords: Charging stations; dc fast charger; electric vehicles (EVs); extreme fast charging (XFC); solid-state transformer (SST)
TL;DR: The benefits of using the solid-state transformers in the XFC stations to replace the conventional line-frequency transformers and a comprehensive review of the medium-voltage SST designs for the X FC application are considered. (via Semantic Scholar)
UN Sustainable Development Goal Categories
9. Industry, Innovation and Infrastructure (OpenAlex)
Sources: Web Of Science, NC State University Libraries
Added: February 3, 2020

Employment

Updated: March 1st, 2022 21:21

Chongqing University Chongqing, Chongqing, CN
Department of Electrical Engineering

Citation Index includes data from a number of different sources. If you have questions about the sources of data in the Citation Index or need a set of data which is free to re-distribute, please contact us.

Certain data included herein are derived from the Web of Science© and InCites© (2024) of Clarivate Analytics. All rights reserved. You may not copy or re-distribute this material in whole or in part without the prior written consent of Clarivate Analytics.