The inductive power transfer (IPT) system for electric vehicle (EV) charging has acquired more research interest in its different facets. However, the misalignment tolerance between the charging coil (installed in the ground) and pick-up coil (mounted on the car chassis), has been a challenge and fundamental interest in the future market of EVs. This paper proposes a new coil design QDQ (Quad D Quadrature) that maintains the high coupling coefficient and efficient power transfer during reasonable misalignment. The QDQ design makes the use of four adjacent circular coils and one square coil, for both charging and pick-up side, to capture the maximum flux at any position. The coil design has been modeled in JMAG software for calculation of in...
The inductive power transfer (IPT) has contributed to the fast growth of the electric vehicle (EV) m...
The transition from conventional to electric transportation has become inevitable in recent years ow...
Nowadays, inductive power transfer (IPT) with magnetic resonance is the most used method for high-po...
The inductive power transfer (IPT) system for electric vehicle (EV) charging has acquired more resea...
The inductive power transfer (IPT) system for electric vehicle (EV) charging has acquired more resea...
This paper proposes a design procedure which optimizes the electrical parameters involved in the Ind...
In order to design a high efficiency Wireless Electric Vehicle Charging (WEVC) system, the design of...
High-efficiency inductive power transfer (IPT) with low misalignment effects is a key issue in the d...
High-efficiency inductive power transfer (IPT) with low misalignment effects is a key issue in the d...
Inductive power transfer (IPT) technology is gaining popularity for wireless charging applications o...
A promising method for charging batteries of electric vehicles (EV) is inductive power transfer (IPT...
This paper focuses on the magnetic design of a multi-coil system for an inductive power transfer (IP...
In charging process of electric vehicle, a misalignment between the transmitter (Tx) and receiver (R...
Inductive power transfer (IPT) systems significantly depend on magnetic coupling and coil characteri...
none5siThis paper presents a study on the behaviour of the currents in a 1-D resonator array of indu...
The inductive power transfer (IPT) has contributed to the fast growth of the electric vehicle (EV) m...
The transition from conventional to electric transportation has become inevitable in recent years ow...
Nowadays, inductive power transfer (IPT) with magnetic resonance is the most used method for high-po...
The inductive power transfer (IPT) system for electric vehicle (EV) charging has acquired more resea...
The inductive power transfer (IPT) system for electric vehicle (EV) charging has acquired more resea...
This paper proposes a design procedure which optimizes the electrical parameters involved in the Ind...
In order to design a high efficiency Wireless Electric Vehicle Charging (WEVC) system, the design of...
High-efficiency inductive power transfer (IPT) with low misalignment effects is a key issue in the d...
High-efficiency inductive power transfer (IPT) with low misalignment effects is a key issue in the d...
Inductive power transfer (IPT) technology is gaining popularity for wireless charging applications o...
A promising method for charging batteries of electric vehicles (EV) is inductive power transfer (IPT...
This paper focuses on the magnetic design of a multi-coil system for an inductive power transfer (IP...
In charging process of electric vehicle, a misalignment between the transmitter (Tx) and receiver (R...
Inductive power transfer (IPT) systems significantly depend on magnetic coupling and coil characteri...
none5siThis paper presents a study on the behaviour of the currents in a 1-D resonator array of indu...
The inductive power transfer (IPT) has contributed to the fast growth of the electric vehicle (EV) m...
The transition from conventional to electric transportation has become inevitable in recent years ow...
Nowadays, inductive power transfer (IPT) with magnetic resonance is the most used method for high-po...