This paper presents a dynamic dead angle control of three-level voltage source converter based HVDC system for real and reactive power control operating at Fundamental Frequency Switching (FFS). A three-level voltage source converter replaces the conventional two-level VSC and it is designed for the active and reactive power control is all four quadrants operation. A new control method is developed for achieving the reactive power control by varying the pulse width and by keeping the dc link voltage constant. The steady state and dynamic performances of HVDC system interconnecting two different frequencies network are demonstrated for active and reactive powers control. Total numbers of transformers used in the system are reduced to half in...
This report on VSC-HVDC transmission is about the transmission of power using DC lines with control ...
High voltage direct current (HVDC) systems have been used as an effective solution to transmit power...
In this study, a sliding mode strategy proposed to control a three levels Back-to-Back High Voltage ...
This paper presents a dynamic dead angle control of three-level voltage source converter based HVDC ...
This paper presents a new control strategy for real and reactive power control of three-level multip...
This paper deals with the analysis, design and control of a three-level 24-pulse Voltage Source Conv...
This paper deals with the optimum dead angle operation of a three level 18-pulse voltage source conv...
This paper deals with the optimum dead angle operation of a three level 18-pulse voltage source conv...
This paper manages another three-level Voltage Source Converter (VSC) with its dynamic control and p...
The Voltage Source Converter (VSC) is replacing the conventional line commutated current source conv...
The harmonic reduction, control and design of 24-pulse three-level voltage source converters (VSCs) ...
The development of power semiconductors, specially IGBTs has led to the small power HVDC transmissio...
The development of power semiconductors, specially IGBTs has led to the small power HVDC transmissio...
This paper deals with the modelling, control and design of 18-pulse voltage source converters (VSCs)...
This paper deals with the performance analysis of a two-level, 24-pulse Voltage Source Converters (V...
This report on VSC-HVDC transmission is about the transmission of power using DC lines with control ...
High voltage direct current (HVDC) systems have been used as an effective solution to transmit power...
In this study, a sliding mode strategy proposed to control a three levels Back-to-Back High Voltage ...
This paper presents a dynamic dead angle control of three-level voltage source converter based HVDC ...
This paper presents a new control strategy for real and reactive power control of three-level multip...
This paper deals with the analysis, design and control of a three-level 24-pulse Voltage Source Conv...
This paper deals with the optimum dead angle operation of a three level 18-pulse voltage source conv...
This paper deals with the optimum dead angle operation of a three level 18-pulse voltage source conv...
This paper manages another three-level Voltage Source Converter (VSC) with its dynamic control and p...
The Voltage Source Converter (VSC) is replacing the conventional line commutated current source conv...
The harmonic reduction, control and design of 24-pulse three-level voltage source converters (VSCs) ...
The development of power semiconductors, specially IGBTs has led to the small power HVDC transmissio...
The development of power semiconductors, specially IGBTs has led to the small power HVDC transmissio...
This paper deals with the modelling, control and design of 18-pulse voltage source converters (VSCs)...
This paper deals with the performance analysis of a two-level, 24-pulse Voltage Source Converters (V...
This report on VSC-HVDC transmission is about the transmission of power using DC lines with control ...
High voltage direct current (HVDC) systems have been used as an effective solution to transmit power...
In this study, a sliding mode strategy proposed to control a three levels Back-to-Back High Voltage ...