This paper describes the thermal behavior of a five-phase permanent-magnet motor during the postfault control strategy, considering the open-circuit fault of both one and two phases. Proper current control strategies are applied to get proper performance under faulty operating conditions. The current of the healthy phases is contextually increased to get a higher average torque, but maintaining the same Joule losses of the healthy case. It is shown that such increase on the average current does not affect the thermal dissipation, and the motor can continue to operate properly also in faulty conditions. Experimental results confirm the simulation predictions
Reliability is a fundamental requirement in electric propulsion systems, involving a particular appr...
Reliability is a fundamental requirement in electric propulsion systems, involving a particular appr...
International audienceDirect torque control (DTC) is extensively used in conventional three-phase dr...
This paper describes the thermal behaviour of a five-phase permanent magnet motor during the post-fa...
The performance of a five-phase permanent-magnet (PM) motor is analyzed under postfault conditions. ...
This paper presents a comparative evaluation of fault tolerant control strategies for a five-phase P...
Since the 1990s a new variable-speed drives, the multi-phase machine, has been developed with more a...
This paper deals with the current control strategies in case of one-phase or two-phase fault of five...
Abstract\u2014This paper deals with the postfault current control strategies of a \ufb01ve-phase per...
This paper compares the post-fault current control strategies of a five-phase permanent magnet motor...
Multiphase electric motors in cooperation with power semiconductor converters belong to the future o...
Equipped with appropriate control strategies, permanent magnet (PM) machines are becoming one of the...
Abstract This article experimentally compares the post-fault performance of a \ufb01ve-phase permane...
Permanent magnet synchronous machines (PMSMs)employing the dual three-phase winding represent a suit...
This paper proposes a simplified lumped parameter thermal network (LPTN) model for thermal analysis ...
Reliability is a fundamental requirement in electric propulsion systems, involving a particular appr...
Reliability is a fundamental requirement in electric propulsion systems, involving a particular appr...
International audienceDirect torque control (DTC) is extensively used in conventional three-phase dr...
This paper describes the thermal behaviour of a five-phase permanent magnet motor during the post-fa...
The performance of a five-phase permanent-magnet (PM) motor is analyzed under postfault conditions. ...
This paper presents a comparative evaluation of fault tolerant control strategies for a five-phase P...
Since the 1990s a new variable-speed drives, the multi-phase machine, has been developed with more a...
This paper deals with the current control strategies in case of one-phase or two-phase fault of five...
Abstract\u2014This paper deals with the postfault current control strategies of a \ufb01ve-phase per...
This paper compares the post-fault current control strategies of a five-phase permanent magnet motor...
Multiphase electric motors in cooperation with power semiconductor converters belong to the future o...
Equipped with appropriate control strategies, permanent magnet (PM) machines are becoming one of the...
Abstract This article experimentally compares the post-fault performance of a \ufb01ve-phase permane...
Permanent magnet synchronous machines (PMSMs)employing the dual three-phase winding represent a suit...
This paper proposes a simplified lumped parameter thermal network (LPTN) model for thermal analysis ...
Reliability is a fundamental requirement in electric propulsion systems, involving a particular appr...
Reliability is a fundamental requirement in electric propulsion systems, involving a particular appr...
International audienceDirect torque control (DTC) is extensively used in conventional three-phase dr...