This paper presents an improvement in harmonic compensation performance of a previously proposed smart charger (SC) with a constant dc-capacitor voltage-control (CDCVC) strategy for electric vehicles (EVs) in single-phase three-wire distribution feeders (SPTWDFs). A controller for 3rd harmonic currents in d-q coordinates is added to the previously proposed SC. This addition improves harmonic compensation performance of the source currents. We briefly introduce harmonic current compensation using the previously proposed CDCVC-based algorithm for the SC. Then, the basic principles of the proposed controller for the 3rd harmonic currents in d-q coordinates are discussed in detail. It is shown that synchronization of the current controllers for...
Conventionally, voltage control in distribution grids has been achieved through load tap changers, c...
Smart Battery Chargers (SBCs) implementing grid-forming (GFM) control strategies are a promising sol...
Common solutions to mitigating harmonics and improving power quality of power systems would include ...
This paper discusses harmonic current compensation of the constant DC-capacitor voltage-control (CDC...
Abstract- A three-phase battery charger for electric vehicles is proposed in this paper. The charger...
The global interest in electric cars aims to achieve sustainability in the transportation sector and...
This paper presents the design of a single-phase electric vehicle (EV) on-board bidirectional charge...
The electric vehicle (EV) could be one of the solutions to address the issues of the environmental p...
This paper proposes a voltage-source converter for an on-board Electric Vehicle (EV) charger which i...
This paper proposes a voltage-source converter for an on-board Electric Vehicle (EV) charger which i...
The deployment of electric vehicles (EVs) protects the environment by reducing carbon emissions. Sin...
© 2010-2012 IEEE. Balanced three-phase four-wire distribution grids can host significantly more dist...
This paper presents a feasible and reliable unified control system for a single-phase 4.5 kVA on-boa...
A new structure of the charging station for electric vehicles has been proposed, which was developed...
The energy efficiency of the battery charging system directly affects the distance which electric ve...
Conventionally, voltage control in distribution grids has been achieved through load tap changers, c...
Smart Battery Chargers (SBCs) implementing grid-forming (GFM) control strategies are a promising sol...
Common solutions to mitigating harmonics and improving power quality of power systems would include ...
This paper discusses harmonic current compensation of the constant DC-capacitor voltage-control (CDC...
Abstract- A three-phase battery charger for electric vehicles is proposed in this paper. The charger...
The global interest in electric cars aims to achieve sustainability in the transportation sector and...
This paper presents the design of a single-phase electric vehicle (EV) on-board bidirectional charge...
The electric vehicle (EV) could be one of the solutions to address the issues of the environmental p...
This paper proposes a voltage-source converter for an on-board Electric Vehicle (EV) charger which i...
This paper proposes a voltage-source converter for an on-board Electric Vehicle (EV) charger which i...
The deployment of electric vehicles (EVs) protects the environment by reducing carbon emissions. Sin...
© 2010-2012 IEEE. Balanced three-phase four-wire distribution grids can host significantly more dist...
This paper presents a feasible and reliable unified control system for a single-phase 4.5 kVA on-boa...
A new structure of the charging station for electric vehicles has been proposed, which was developed...
The energy efficiency of the battery charging system directly affects the distance which electric ve...
Conventionally, voltage control in distribution grids has been achieved through load tap changers, c...
Smart Battery Chargers (SBCs) implementing grid-forming (GFM) control strategies are a promising sol...
Common solutions to mitigating harmonics and improving power quality of power systems would include ...