A Single Phase Zero-Voltage-Transition Type-1 Common Ground PV Inverter
In this paper, a novel topology is proposed where zero voltage transition (ZVT) soft switching technique is integrated with Type-l common ground single phase transformer-less
In this paper, a novel topology is proposed where zero voltage transition (ZVT) soft switching technique is integrated with Type-l common ground single phase transformer-less
Abstract: This paper explores performance enhancement of the common ground dynamic dc-link (CGDL) inverter for single phase photovoltaic (PV) applications by a combination of gallium
This article presents a wide-range zero-voltage-transition high-frequency single-phase inverter. The proposed inverter consists of a full-bridge inverter and two auxiliary
In this paper, a novel topology is proposed where zero voltage transition (ZVT) soft switching technique is integrated with Type-l common ground single phase transformer-less
To overcome some drawbacks of the aforementioned ZVT techniques, this paper proposes an inductor feedback ZVT circuit implementation that allows unipolar PWM or hybrid PWM
This paper presents a wide-range zero-voltage-transition (ZVT) high-frequency single-phase inverter. The proposed inverter consists of a full-bridge inverter and two auxiliary switches that
This paper proposes a topology based on bus clamping modulation and zero-voltage-transition (ZVT) technique to realize zero-voltage-switching (ZVS) for all the main switches of the full
Abstract—This paper proposes a topology based on bus clamping modulation and zero-voltage-transition (ZVT) technique to realize zero-voltage-switching (ZVS) for all the main switches of
This article presents a wide-range zero-voltage-transition high-frequency single-phase inverter. The proposed inverter consists of a full-bridge inverter and two auxiliary
This article presents a wide-range zero-voltage-transition high-frequency single-phase inverter. The proposed inverter consists of a
This paper proposes a topology based on bus clamping modulation and zero-voltage-transition (ZVT) technique to realize zero-voltage-switching (ZVS) for all the main switches of the full
A 1 kW inverter of the proposed topology in standalone mode (both discrete and coupled inductor configurations) operating at 400 kHz switching frequency has been built to verify the proposed
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