A Soft-Switched High-Frequency Link Single-Stage Three

His research interests include high-frequency-link single stage converters, dual active bridge based converters, resonant converters, soft-switching techniques, and design of high

Voltage Fed Full Bridge DC-DC & DC-AC Converter High

In many applications, it is important for an inverter to be lightweight and of a relatively small size. This can be achieved by using a High-Frequency Inverter that involves an isolated DC-DC

A Single-Stage High-Frequency-Link Microinverter with

This paper proposes a highly efficient single-stage dual-active-bridge (DAB) microinverter with a novel modulation strategy to minimize the reactive power flow of DAB

A Comprehensive Review on Matrix-Integrated Single-Stage

Our study provides a comprehensive analysis and classification of matrix-integrated isolated single-stage MF/HF AC-AC converters, DC-AC inverters, and AC-DC rectifier

A High-Frequency Link Single-Stage PWM Inverter With

Abstract—This paper presents a single-stage bidirectional high-frequency transformer (HFT) link dc/ac converter topology for a three-phase adjustable magnitude and frequency PWM ac drive.

A High-Frequency-Link Single-Stage Three-Phase Cyclo-Active-Bridge Inverter

The single-stage design employs a high-frequency ac transformer link to bypass the need for large dc-link capacitors and filter inductors, while providing galvanic isolation and enabling

A Single-Stage High-Frequency-Link Microinverter

This paper proposes a highly efficient single-stage dual-active-bridge (DAB) microinverter with a novel modulation strategy to

Three-mode one-cycle controlled current-source single-stage

To overcome the shortcomings of the above-mentioned inverters, the circuit topology of a current-source single-stage multi-input high-frequency-link grid-connected

High-Efficiency and High -Frequency Resonant Converter

This research would like to develop highefficiency and high- frequency resonant converter - based single-stage isolated inverter with GaN. By combining the merits of resonant

A Single-Stage High-Frequency-Link Split-Phase

Therefore, a novel single-stage HFL voltage-source microinverter with a split-phase structure is proposed in this article. The proposed microinverter can provide a split-phase output voltage to

Single Stage Transformer Isolated High Frequency AC Link

This single stage power conversion is different from two stage topologies, which first rectify the high frequency AC voltage to DC and then invert it to generate the output voltages.

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