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A review of three-phase improved power quality AC-DC converters
Three-phase AC-DC converters have been developed to a matured level with improved
power quality in terms of power-factor correction, reduced total harmonic distortion at input …
power quality in terms of power-factor correction, reduced total harmonic distortion at input …
Linear active stabilization of converter-dominated DC microgrids
DC microgrids are gaining high momentum under the smart grid environment. DC microgrid
stability can be an issue under high penetration of tightly regulated power converters used to …
stability can be an issue under high penetration of tightly regulated power converters used to …
Input-output linearization and zero-dynamics control of three-phase AC/DC voltage-source converters
TS Lee - IEEE Transactions on Power Electronics, 2003 - ieeexplore.ieee.org
Nonlinear differential-geometric techniques are proposed for the design of a feedback
controller for three-phase voltage-source pulsewidth modulation (PWM) AC/DC boost …
controller for three-phase voltage-source pulsewidth modulation (PWM) AC/DC boost …
Lagrangian modeling and passivity-based control of three-phase AC/DC voltage-source converters
TS Lee - IEEE Transactions on Industrial Electronics, 2004 - ieeexplore.ieee.org
In this paper, we investigate the dc-bus voltage regulation problem for a three-phase boost-
type pulsewidth-modulated (PWM) ac/dc converter using passivity-based control theory of …
type pulsewidth-modulated (PWM) ac/dc converter using passivity-based control theory of …
Hybrid renewable energy systems stability analysis through future advancement technique: A review
T Jeyaraj, A Ponnusamy, D Selvaraj - Applied Energy, 2025 - Elsevier
The stability of microgrids in hybrid power systems is essential because excess power from
renewable sources creates grid-balancing challenges. This review analyses the …
renewable sources creates grid-balancing challenges. This review analyses the …
A robust continuous-time MPC of a DC–DC boost converter interfaced with a grid-connected photovoltaic system
The main function of the DC-DC converter in a grid-connected photovoltaic (PV) system is to
regulate the terminal voltage of the PV arrays to ensure delivering the maximum power to …
regulate the terminal voltage of the PV arrays to ensure delivering the maximum power to …
A fast-acting DC-link voltage controller for three-phase DSTATCOM to compensate AC and DC loads
MK Mishra, K Karthikeyan - IEEE transactions on power …, 2009 - ieeexplore.ieee.org
The transient response of the distribution static compensator (DSTATCOM) is very important
while compensating rapidly varying unbalanced and nonlinear loads. Any change in the …
while compensating rapidly varying unbalanced and nonlinear loads. Any change in the …
Synchronous reference frame hysteresis current control for grid converter applications
This paper investigates the operation of space-vector-based hysteresis current control in the
synchronous reference frame (SRF) for grid-connected voltage source converters. The …
synchronous reference frame (SRF) for grid-connected voltage source converters. The …
Design and implementation of a nonlinear PI predictive controller for a grid-tied photovoltaic inverter
This paper presents the design, implementation, and performance testing of a nonlinear
proportional-integral (PI) predictive controller for a grid-tied inverter used in photovoltaic …
proportional-integral (PI) predictive controller for a grid-tied inverter used in photovoltaic …
Adaptive High-Gain Observer-Based Control for Grid-Tied LCL Filter Systems
This paper presents the design and real-time implementation of a composite controller
consisting of a state-feedback control law and high-gain observer for grid-tied inverter with …
consisting of a state-feedback control law and high-gain observer for grid-tied inverter with …