This paper discusses harmonic current compensation of the constant DC-capacitor voltage-control (CDCVC)-based strategy of smart chargers for electric vehicles (EVs) in single-phase three-wire distribution feeders (SPTWDFs) under nonlinear load conditions. The basic principle of the CDCVC-based harmonics compensation strategy under nonlinear load conditions is discussed in detail. The instantaneous power flowing into the three-leg pulse-width modulated (PWM) rectifier, which performs as a smart charger, shows that the CDCVC-based strategy achieves balanced and sinusoidal source currents with a unity power factor. The CDCVC-based harmonics compensation strategy does not require any calculation blocks of fundamental reactive, unbalanced active...
With the increased penetration of distributed generation, maintaining voltages across distribution n...
Smart Battery Chargers (SBCs) implementing grid-forming (GFM) control strategies are a promising sol...
The influence of electric vehicle charging stations on power grid harmonics is becoming increasingly...
This paper presents an improvement in harmonic compensation performance of a previously proposed sma...
This paper presents the design of a single-phase electric vehicle (EV) on-board bidirectional charge...
This paper first introduces the impacts of battery charger and nonlinear load harmonics on smart gri...
Widespread growth of the consumer electronics market and the upward trend in harnessing electrical p...
The global interest in electric cars aims to achieve sustainability in the transportation sector and...
Abstract- A three-phase battery charger for electric vehicles is proposed in this paper. The charger...
© 1986-2012 IEEE. Vehicle to grid (V2G) reactive power compensation using electric vehicle (EV) onbo...
In this paper, the theory of instantaneous symmetrical components is applied to explore various cont...
In this paper, a new control scheme of a three-phase active power filter (APF) is proposed to elimin...
© 2010-2012 IEEE. Balanced three-phase four-wire distribution grids can host significantly more dist...
Common solutions to mitigating harmonics and improving power quality of power systems would include ...
Harmonics and load unbalance create several adverse issues in power distribution system, which are g...
With the increased penetration of distributed generation, maintaining voltages across distribution n...
Smart Battery Chargers (SBCs) implementing grid-forming (GFM) control strategies are a promising sol...
The influence of electric vehicle charging stations on power grid harmonics is becoming increasingly...
This paper presents an improvement in harmonic compensation performance of a previously proposed sma...
This paper presents the design of a single-phase electric vehicle (EV) on-board bidirectional charge...
This paper first introduces the impacts of battery charger and nonlinear load harmonics on smart gri...
Widespread growth of the consumer electronics market and the upward trend in harnessing electrical p...
The global interest in electric cars aims to achieve sustainability in the transportation sector and...
Abstract- A three-phase battery charger for electric vehicles is proposed in this paper. The charger...
© 1986-2012 IEEE. Vehicle to grid (V2G) reactive power compensation using electric vehicle (EV) onbo...
In this paper, the theory of instantaneous symmetrical components is applied to explore various cont...
In this paper, a new control scheme of a three-phase active power filter (APF) is proposed to elimin...
© 2010-2012 IEEE. Balanced three-phase four-wire distribution grids can host significantly more dist...
Common solutions to mitigating harmonics and improving power quality of power systems would include ...
Harmonics and load unbalance create several adverse issues in power distribution system, which are g...
With the increased penetration of distributed generation, maintaining voltages across distribution n...
Smart Battery Chargers (SBCs) implementing grid-forming (GFM) control strategies are a promising sol...
The influence of electric vehicle charging stations on power grid harmonics is becoming increasingly...