Due to the full-wave AC–DC power conversion, second-order frequency oscillations of current and voltage are created in single-phase PV-grid-connected inverters. These oscillations propagate toward the input and adversely affect the PV power utilization ratio. Large power decoupling capacitors are the preliminary solution for coping with voltage ripples across PVs, and they decrease the lifetime of the overall system. This paper proposes the average current mode control (ACMC) of the input inductor in a DC–DC boost converter in a double-stage PV power conversion system. Through extensive explanations of the modeling and control of a DC–DC boost converter, it is shown that the ACMC reduces the propagation of the second-order frequency compone...
Improvement of the current control loop of the multifunctional grid-tied inverter of the local objec...
WOS: 000393785200006This study presents two-stage inverter topology for single-phase grid-connected ...
High-volume capacitance is required to buffer the power difference between the input and output port...
The single-phase photovoltaic (PV) inverter needs significant capacitance to buffer the double-line ...
In the case of photovoltaic (PV) systems, an adequate PV voltage regulation is fundamental in order ...
This paper addresses a potential instability that can take place in Boost converters with average in...
Unity power factor injection from single-phase PVs located towards the end of a residential feeder l...
In this work, a non-isolated DC–DC converter is presented that combines a voltage doubler circuit an...
This paper presents a photovoltaic (PV) system designed to reduce the DC-link capacitance present in...
Abstract—Boost dc–ac inverter naturally generates in a single stage an ac voltage whose peak value c...
AbstractAchieving high reliable grid-connected photovoltaic (PV) systems with high power quality and...
This paper presents an advanced Average Current-Mode Control (ACMC) technique for single phase AC-DC...
Single-phase power converters suffer from the double frequency power pulsation. In voltage source in...
© 1986-2012 IEEE. This paper presents a method to enhance the dc-bus voltage-control loop of a singl...
This paper investigates the viability and challenges of building a single-phase PV-inverter as AC an...
Improvement of the current control loop of the multifunctional grid-tied inverter of the local objec...
WOS: 000393785200006This study presents two-stage inverter topology for single-phase grid-connected ...
High-volume capacitance is required to buffer the power difference between the input and output port...
The single-phase photovoltaic (PV) inverter needs significant capacitance to buffer the double-line ...
In the case of photovoltaic (PV) systems, an adequate PV voltage regulation is fundamental in order ...
This paper addresses a potential instability that can take place in Boost converters with average in...
Unity power factor injection from single-phase PVs located towards the end of a residential feeder l...
In this work, a non-isolated DC–DC converter is presented that combines a voltage doubler circuit an...
This paper presents a photovoltaic (PV) system designed to reduce the DC-link capacitance present in...
Abstract—Boost dc–ac inverter naturally generates in a single stage an ac voltage whose peak value c...
AbstractAchieving high reliable grid-connected photovoltaic (PV) systems with high power quality and...
This paper presents an advanced Average Current-Mode Control (ACMC) technique for single phase AC-DC...
Single-phase power converters suffer from the double frequency power pulsation. In voltage source in...
© 1986-2012 IEEE. This paper presents a method to enhance the dc-bus voltage-control loop of a singl...
This paper investigates the viability and challenges of building a single-phase PV-inverter as AC an...
Improvement of the current control loop of the multifunctional grid-tied inverter of the local objec...
WOS: 000393785200006This study presents two-stage inverter topology for single-phase grid-connected ...
High-volume capacitance is required to buffer the power difference between the input and output port...