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Journal ArticleDOI

Comparison and Analysis of Single-Phase Transformerless Grid-Connected PV Inverters

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TLDR
In this paper, a simple modified H-bridge zero-voltage state rectifier is proposed, to combine the benefits of the low-loss ac-decoupling method and the complete leakage current elimination of the CMV clamping method.
Abstract
Leakage current minimization is one of the most important considerations in transformerless photovoltaic (PV) inverters. In the past, various transformerless PV inverter topologies have been introduced, with leakage current minimized by the means of galvanic isolation and common-mode voltage (CMV) clamping. The galvanic isolation can be achieved via dc-decoupling or ac-decoupling, for isolation on the dc- or ac-side of the inverter, respectively. It has been shown that the latter provides lower losses due to the reduced switch count in conduction path. Nevertheless, leakage current cannot be simply eliminated by galvanic isolation and modulation techniques, due to the presence of switches’ junction capacitances and resonant circuit effects. Hence, CMV clamping is used in some topologies to completely eliminate the leakage current. In this paper, several recently proposed transformerless PV inverters with different galvanic isolation methods and CMV clamping technique are analyzed and compared. A simple modified H-bridge zero-voltage state rectifier is also proposed, to combine the benefits of the low-loss ac-decoupling method and the complete leakage current elimination of the CMV clamping method. The performances of different topologies, in terms of CMV, leakage current, total harmonic distortion, losses and efficiencies are compared. The analyses are done theoretically and via simulation studies, and further validated with experimental results. This paper is helpful for the researchers to choose the appropriate topology for transformerless PV applications and to provide the design principles in terms of common-mode behavior and efficiency.

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Citations
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Journal ArticleDOI

Transformerless Inverter Topologies for Single-Phase Photovoltaic Systems: A Comparative Review

TL;DR: This paper aims to comprehensively review and classify various transformerless inverters with detailed analytical comparisons, and to give more insight on the CM characteristics and leakage current, computer simulations of major transformer less inverter topologies have been performed in PLECS software.
Journal ArticleDOI

Common-Ground-Type Transformerless Inverters for Single-Phase Solar Photovoltaic Systems

TL;DR: A family of novel flying capacitor transformerless inverters for single-phase photovoltaic (PV) systems based on a flying capacitor principle and requires only four power switches and/or diodes, one capacitor, and a small filter at the output stage is proposed.
Journal ArticleDOI

Solar Photovoltaic and Thermal Energy Systems: Current Technology and Future Trends

TL;DR: The focus in the paper is put on the current technology, installations challenges, and future expectations of solar energy (mainly photovoltaic) technology and the required conversion systems.
Journal ArticleDOI

Hardware-Based Cascaded Topology and Modulation Strategy With Leakage Current Reduction for Transformerless PV Systems

TL;DR: A cascaded topology based on the H5 inverter is presented, along with a new modulation strategy, which can ensure that the stray capacitor voltage is free of high-frequency components, and the leakage current can be effectively reduced.
Journal ArticleDOI

Leakage Current Elimination of Four-Leg Inverter for Transformerless Three-Phase PV Systems

TL;DR: In this article, the leakage current elimination of a three-phase four-leg PV inverter is investigated with the common-mode loop model established, the generation mechanism of leakage current is clearly identified Different typical carrier-based modulation methods and their corresponding commonmode voltages are discussed.
References
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Journal ArticleDOI

A New High-Efficiency Single-Phase Transformerless PV Inverter Topology

TL;DR: This paper proposes a new topology, based on the H-bridge with a new ac bypass circuit consisting of a diode rectifier and a switch with clamping to the dc midpoint, which achieves high conversion efficiency and low leakage current.
Journal ArticleDOI

Transformerless Inverter for Single-Phase Photovoltaic Systems

TL;DR: In this article, the authors proposed a new high-efficiency topology that generates no varying common-mode voltage and requires the same low-input voltage as the bipolar PWM full bridge.
Journal ArticleDOI

Highly Efficient Single-Phase Transformerless Inverters for Grid-Connected Photovoltaic Systems

TL;DR: This paper will propose a single-phase transformerless inverter circuit being composed of the association of two step-down converters, which is possible to achieve a high level of efficiency and reliability.
Proceedings ArticleDOI

Inverters for single-phase grid connected photovoltaic systems-an overview

TL;DR: An overview on developments and a summary of the state-of-the-art of inverter technology in Europe for single-phase grid-connected photovoltaic (PV) systems for power levels up to 5 kW is provided.
Journal ArticleDOI

Transformerless Single-Phase Multilevel-Based Photovoltaic Inverter

TL;DR: A new high-efficiency topology for transformerless systems is proposed, which does not generate common-mode currents and topologically guarantees that no dc is injected into the grid and has been verified in a 5-kW prototype with satisfactory results.
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