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Zhe Zhang 0002
Person information
- affiliation: Technical University of Denmark, Department of Electrical Engineering, Kongens Lyngby, Denmark
Other persons with the same name
- Zhe Zhang — disambiguation page
- Zhe Zhang 0001 (aka: Zhe (Sarina) Zhang) — Texas A&M University, Department of Geography, College Station, TX, USA (and 2 more)
- Zhe Zhang 0003 — University of Nebraska-Lincoln, Department of Computer Science and Engineering, Holland Computing Center, Lincoln, NE, USA
- Zhe Zhang 0004 — IBM Corporation, Watson Group, Research Triangle Park, NC, USA (and 1 more)
- Zhe Zhang 0005 — IBM Thomas J. Watson Research Center, Yorktown Heights, NY, USA (and 2 more)
- Zhe Zhang 0006 — Trifo, Inc., Santa Clara, CA, USA (and 2 more)
- Zhe Zhang 0007 — Zhengzhou University of Light Industry, School of Computer and Communication Engineering, Zhengzhou, China (and 1 more)
- Zhe Zhang 0008 — Huawei International Pte Ltd., Singapore (and 1 more)
- Zhe Zhang 0009 — RMIT University, School of Electrical and Computer Engineering, Melbourne, Australia
- Zhe Zhang 0010 — Nanjing University of Posts and Telecommunications, China (and 1 more)
- Zhe Zhang 0011 — Beijing Jiaotong University, State Key Laboratory of Rail Traffic Control and Safety, Beijing, China
- Zhe Zhang 0012 — Huaqiao University, College of Computer Science and Technology, Xiamen, China
- Zhe Zhang 0013 — Huazhong University of Science and Technology, College of Electrical and Electronic Engineering, State Key Laboratory of Advanced Electromagnetic Engineering and Technology, Wuhan, China
- Zhe Zhang 0014 — Civil Aviation University of China, Tianjin Key Laboratory for Advanced Signal Processing, Tianjin, China
- Zhe Zhang 0015 — Beihang University, School of Instrumentation and Optoelectronic Engineering, Beijing, China
- Zhe Zhang 0016 — National University of Defense Technology, College of Systems Engineering, Changsha, China
- Zhe Zhang 0017 — Nanchang Hangkong University, School of Information Engineering, Nanchang, China
- Zhe Zhang 0018 — Heilongjiang University, School of Electronic Engineering, Harbin, China
- Zhe Zhang 0019 — Swiss Federal Institute of Technology in Lausanne, Switzerland (and 1 more)
- Zhe Zhang 0020 — North China University of Water Resources and Electric Power, Institute of Electric Power, Zhengzhou, China
- Zhe Zhang 0021 — Capital Medical University, Beijing Tiantan Hospital, Beijing, China (and 1 more)
- Zhe Zhang 0022 — Hunan University, College of Electrical and Information Engineering, Changsha, China
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2020 – today
- 2024
- [j14]Zhe Shi, Yu Tang, Zhe Zhang, Leijiao Ge, Pooya Davari:
Transformer Volume Reduction: A New Analysis and Design of an SSSA Control-Based 20-kW High Power Density Wide Range Resonant Converter. IEEE Trans. Ind. Electron. 71(11): 13503-13512 (2024) - 2023
- [j13]Sicheng Gong, Tomislav Dragicevic, Nenad Mijatovic, Zhe Zhang:
A Novel Attack Identification Mechanism in IoT-Based Converter-Composed DC Grids. IEEE Internet Things J. 10(9, May 1): 7554-7567 (2023) - [j12]Chang Wang, Tiberiu-Gabriel Zsurzsan, Zhe Zhang:
Genetic Algorithm Assisted Parametric Design of Splitting Inductance in High Frequency GaN-Based Dual Active Bridge Converter. IEEE Trans. Ind. Electron. 70(1): 522-531 (2023) - [j11]Yudi Xiao, Martijn Duraij, Zhe Zhang, Tiberiu-Gabriel Zsurzsan, Michael A. E. Andersen:
ZVS Design in Full-SiC Three-Level Neutral-Point-Clamped DC-DC Converter Considering Quasi-Linear Output Capacitance $C_{oss}$. IEEE Trans. Ind. Electron. 70(9): 8970-8978 (2023) - 2022
- [j10]Xu Chen, Jiasheng Huang, Yi Dou, Zhe Zhang, Dennis Øland Larsen, Pere Llimós Muntal, Michael A. E. Andersen:
Capacitive Wireless Power Transfer System With Inductorless Receiver Side. IEEE Trans. Circuits Syst. I Regul. Pap. 69(3): 1372-1380 (2022) - 2021
- [j9]Zhe Zhang, Jiasheng Huang, Yudi Xiao:
GaN-Based 1-MHz Partial Parallel Dual Active Bridge Converter With Integrated Magnetics. IEEE Trans. Ind. Electron. 68(8): 6729-6738 (2021) - [c18]Martijn Duraij, Yudi Xiao, Gabriel Zsurzsan, Zhe Zhang:
A Comparative Study on Class AB and Class D Amplifier Topologies for High Temperature Power Line Communication Circuits. ISPLC 2021: 102-107 - 2020
- [j8]Jingjing Huang, Xin Zhang, Zhe Zhang:
Three-Step Switching Frequency Selection Criteria for the Generalized CLLC-Type DC Transformer in Hybrid AC-DC Microgrid. IEEE Trans. Ind. Electron. 67(2): 980-991 (2020) - [j7]Yijie Wang, Óscar Lucía, Zhe Zhang:
High and Very High Frequency Power Supplies for Industrial Applications. IEEE Trans. Ind. Electron. 67(2): 1400-1404 (2020) - [j6]Zheng Zeng, Xin Zhang, Zhe Zhang:
Imbalance Current Analysis and Its Suppression Methodology for Parallel SiC MOSFETs with Aid of a Differential Mode Choke. IEEE Trans. Ind. Electron. 67(2): 1508-1519 (2020) - [j5]Bin Zhao, Xin Zhang, Zhe Zhang:
Sequential Offline-Online-Offline Measurement Approach for High-Frequency LCLC Resonant Converters in the TWTA Applications. IEEE Trans. Ind. Electron. 67(2): 1568-1579 (2020) - [c17]Martijn Duraij, Yudi Xiao, Gabriel Zsurzsan, Zhe Zhang, Mads Hansen, Brian Thomsen:
A Pragmatic Approach to Dynamic Behavior in Electrical Lines Used for Well Intervention Tools. ICIT 2020: 601-606
2010 – 2019
- 2019
- [j4]Xu Chen, Shengbao Yu, Zhe Zhang:
A Receiver-Controlled Coupler for Multiple Output Wireless Power Transfer Applications. IEEE Trans. Circuits Syst. I Regul. Pap. 66-I(11): 4542-4552 (2019) - [c16]Yangkun Li, Xingkui Mao, Jungao Zhu, Jiqing Dong, Zhe Zhang:
2-D analytical winding losses model of micro-inductor. IECON 2019: 4869-4874 - [c15]Xu Chen, Shengbao Yu, Zhe Zhang:
A Strip-Coupler for Dynamic Capacitive Wireless Power Transfer. IECON 2019: 4887-4892 - [c14]Mads Nannestad, Benoit Bidoggia, Zhe Zhang, Tiberiu-Gabriel Zsurzsan, Kasper Skriver:
Modeling of transformer-rectifier sets for the energization of electrostatic precipitators using Modelica. Modelica 2019: 157:023 - 2018
- [c13]Bainan Sun, Zhe Zhang, Michael A. E. Andersen:
Research of Low Inductance Loop Design in GaN HEMT Application. IECON 2018: 1466-1470 - 2017
- [c12]Zilong Yang, Zhe Wang, Ying Zhang, Zhe Zhang:
Topology and control of transformerless high voltage grid-connected PV systems with a cascade step-up structure. IECON 2017: 4239-4244 - 2016
- [j3]Zhe Zhang, Claus Thorp Hansen, Michael A. E. Andersen:
Teaching Power Electronics With a Design-Oriented, Project-Based Learning Method at the Technical University of Denmark. IEEE Trans. Educ. 59(1): 32-38 (2016) - [c11]Tiberiu-Gabriel Zsurzsan, Zhe Zhang, Michael M. A. Andersen, Nils A. Andersen:
Class-D amplifier design and performance for driving a piezo actuator drive servomotor. ICIT 2016: 1068-1072 - [c10]Xingkui Mao, Qisheng Huang, Qingbo Ke, Yudi Xiao, Zhe Zhang, Michael A. E. Andersen:
Grid-connected photovoltaic micro-inverter with new hybrid control LLC resonant converter. IECON 2016: 2319-2324 - [c9]Xingkui Mao, Qisheng Huang, Yudi Xiao, Shifa Lan, Zhe Zhang, Michael A. E. Andersen:
Wireless power supply via coupled magnetic resonance for on-line monitoring wireless sensor of high-voltage electrical equipment. IECON 2016: 4582-4587 - 2015
- [c8]Tiberiu-Gabriel Zsurzsan, Michael A. E. Andersen, Zhe Zhang, Nils A. Andersen:
Preisach model of hysteresis for the Piezoelectric Actuator Drive. IECON 2015: 2788-2793 - 2014
- [c7]Marzieh Ekhtiari, Erik Bruun, Michael A. E. Andersen, Zhe Zhang:
Bi-directional high-side current sense circuit for switch mode power supplies. ICECS 2014: 630-633 - [c6]Alexander Anthon, Juan C. Hernandez, Zhe Zhang, Michael A. E. Andersen:
Switching investigations on a SiC MOSFET in a TO-247 package. IECON 2014: 1854-1860 - [c5]Marzieh Ekhtiari, Zhe Zhang, Michael A. E. Andersen:
State-of-the-art piezoelectric transformer-based switch mode power supplies. IECON 2014: 5072-5078 - 2013
- [j2]Zhe Zhang, Ole C. Thomsen, Michael A. E. Andersen:
Discontinuous PWM Modulation Strategy With Circuit-Level Decoupling Concept of Three-Level Neutral-Point-Clamped (NPC) Inverter. IEEE Trans. Ind. Electron. 60(5): 1897-1906 (2013) - [c4]Hoda Ghoreishy, Ali Yazdian Varjani, Mustafa Mohamadian, Shahrokh Farhangi, Zhe Zhang:
A new selective harmonic elimination pulse-width and amplitude modulation (SHE-PWAM) for drive applications. IECON 2013: 234-239 - [c3]Lina Huang, Zhe Zhang, Michael A. E. Andersen:
Detailed behavior analysis for high voltage bidirectional flyback converter driving DEAP actuator. IECON 2013: 625-630 - [c2]Zhe Zhang, Michael A. E. Andersen:
Interleaved boost-half-bridge dual-input DC-DC converter with a PWM plus phase-shift control for fuel cell applications. IECON 2013: 1679-1684 - [c1]Riccardo Pittini, Zhe Zhang, Michael A. E. Andersen:
Analysis of DC/DC converter efficiency for energy storage system based on bidirectional fuel cells. ISGT Europe 2013: 1-5 - 2012
- [j1]Zhe Zhang, Ole C. Thomsen, Michael A. E. Andersen:
Optimal Design of a Push-Pull-Forward Half-Bridge (PPFHB) Bidirectional DC-DC Converter With Variable Input Voltage. IEEE Trans. Ind. Electron. 59(7): 2761-2771 (2012)
Coauthor Index
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last updated on 2024-12-29 21:11 CET by the dblp team
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