This study proposes a high-gain reflex-charging-based bidirectional DC charger (RC-BDC) to enhance the battery charging efficiency of light electric vehicles (LEV) in a DC-microgrid. The proposed charger topology consists of an unregulated level converter (ULC) and a two-phase interleaved buck-boost charge-pump converter (IBCPC), which together provide low ripple and high voltage conversion ratio. As the high-gain RC-BDC charges, the LEV’s battery with reflex charging currents, high battery charging efficiency, and prolonged battery life cycles are achieved. This is possible due to the recovering of negative pulse energy of reflex charging currents to reduce charge dissipations within LEV’s batteries. Derivations of the operating principles...
Efficient energy storage system is one of the most vital elements in a DC micro gird. The efficient...
A DC-DC converter that can be applied for battery chargers with the power-capacity of over 7-kW for ...
In the future, more and more electric vehicle (EV) batteries are connected to the direct current (DC...
This study proposes a high-gain reflex-charging-based bidirectional DC charger (RC-BDC) to enhance t...
[[abstract]]In this paper, a reflex charging strategy with the energy recovery function for a bidire...
The main objective of this paper was to study a bidirectional direct current to direct current conve...
This thesis investigates the development of efficient bidirectional chargers, an integral component ...
This study proposes a novel bidirectional isolated DC/DC converter with a high gain ratio and wide i...
The popularity of electric vehicles has seen significant growth in the latest years. More electric v...
This paper presents an on-board vehicular battery charger that integrates bidirectional AC/DC conver...
This paper presents an on-board vehicular battery charger that integrates bidirectional AC/DC conver...
The objective of this paper is to implement a two-phase, interleaved, bidirectional DC/DC converter ...
The objective of this paper is to implement a two-phase, interleaved, bidirectional DC/DC converter ...
Efficient energy storage system is one of the most vital elements in a DC micro gird. The efficient...
This paper presents several valuable techniques in the development of on-board type battery chargers...
Efficient energy storage system is one of the most vital elements in a DC micro gird. The efficient...
A DC-DC converter that can be applied for battery chargers with the power-capacity of over 7-kW for ...
In the future, more and more electric vehicle (EV) batteries are connected to the direct current (DC...
This study proposes a high-gain reflex-charging-based bidirectional DC charger (RC-BDC) to enhance t...
[[abstract]]In this paper, a reflex charging strategy with the energy recovery function for a bidire...
The main objective of this paper was to study a bidirectional direct current to direct current conve...
This thesis investigates the development of efficient bidirectional chargers, an integral component ...
This study proposes a novel bidirectional isolated DC/DC converter with a high gain ratio and wide i...
The popularity of electric vehicles has seen significant growth in the latest years. More electric v...
This paper presents an on-board vehicular battery charger that integrates bidirectional AC/DC conver...
This paper presents an on-board vehicular battery charger that integrates bidirectional AC/DC conver...
The objective of this paper is to implement a two-phase, interleaved, bidirectional DC/DC converter ...
The objective of this paper is to implement a two-phase, interleaved, bidirectional DC/DC converter ...
Efficient energy storage system is one of the most vital elements in a DC micro gird. The efficient...
This paper presents several valuable techniques in the development of on-board type battery chargers...
Efficient energy storage system is one of the most vital elements in a DC micro gird. The efficient...
A DC-DC converter that can be applied for battery chargers with the power-capacity of over 7-kW for ...
In the future, more and more electric vehicle (EV) batteries are connected to the direct current (DC...