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Fang Zheng Peng

Researcher at Florida State University

Publications -  381
Citations -  46524

Fang Zheng Peng is an academic researcher from Florida State University. The author has contributed to research in topics: Inverter & Z-source inverter. The author has an hindex of 87, co-authored 380 publications receiving 43073 citations. Previous affiliations of Fang Zheng Peng include Oak Ridge National Laboratory & Nagaoka University of Technology.

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Proceedings ArticleDOI

Operation modes and characteristics of the Z-source inverter with small inductance

TL;DR: In this paper, the authors analyzed the operation modes and voltage boost relationship of the Z-source inverter under the low inductance and large current ripple condition, where the inductor current becomes high ripple or even discontinuous.
Journal ArticleDOI

Voltage balancing control of diode-clamped multilevel rectifier/inverter systems

TL;DR: A new voltage balancing control for the diode-clamped multilevel rectifier/inverter system that regulates the DC bus voltage, balances the capacitors, and decreases the harmonic components of the voltage and current is presented.
Journal ArticleDOI

A Switched-Capacitor DC–DC Converter With High Voltage Gain and Reduced Component Rating and Count

TL;DR: In this paper, the authors proposed a bidirectional switched-capacitor dc-dc converter for applications that require high voltage gain, which features low component (switching device and capacitor) power rating, small switching device count, and low output capacitance requirement.
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A magnetic-less DC-DC converter for dual voltage automotive systems

TL;DR: In this paper, a compact, efficient, magnetic-less bi-directional DC-DC converter for dual voltage (42/14 Volt) automotive systems is presented, which is based on the generalized multilevel converter topology having the ability to balance battery voltages, emit zero or low electromagnetic interference (EMI), and have low cost by using low-voltage metal oxide field effect transistors (MOSFETs).
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Modeling, Impedance Design, and Efficiency Analysis of Quasi- $Z$ Source Module in Cascaded Multilevel Photovoltaic Power System

TL;DR: An analytic model to accurately calculate the 2ω voltage and current ripples of each qZSI module and the power loss is proposed and the measured efficiency from the prototype verifies the theoretical calculation, and the qZS-CMI-based grid-tie PV power system is tested in practical.