Thesis On Switched Reluctance Motor

Thesis On Switched Reluctance Motor-90
The debug interface is isolated from the XMC microcontroller and position detection interfaces in order to guarantee safe operation during software development.The XMC1300 drive card can control one 3-phase drive, while the XMC4400 drive card can control up to two.The 5-phase prototypeachieves higher efficiency than all known prior art switched reluctance motors andindustrial induction machines constructed in the same frame size.

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XMC1000 XMC4400 Our DC motor control shield is one of the first high current motor control boards being compatible to Arduino as well as to Infineon’s XMC1100 Boot Kit.

The DC motor control shield is capable to drive two uni-directional DC motors (half bridge configuration) or one bi-directional DC motor (H-Bridge configuration).

The electromagnetic theory of doubly excited systems is used in conjunction witha dynamic simulation program, written in Turbo Pascal, to design a 5-phaseswitched reluctance motor that exploits the advantages of short flux paths.

Testresults from the constructed prototype confirm that short flux paths significantlyimprove the efficiency of the switched reluctance motor.

In order to accurately model short flux path machines, a thorough electromagneticanalysis of doubly excited systems is adopted.

Apa Cite Dissertation - Thesis On Switched Reluctance Motor

The proposed modelling theoryforms the basis for design considerations that can optimise the performance of the4-phase and 5-phase switched reluctance motors.

Short fluxpath motor configurations have been modelled extensively using electromagneticfinite element analysis.

It is demonstrated that short flux paths significantly reducethe MMF required to establish the B-field pattern in a motor; as a result copperlosses are reduced.

Simply select your application and the online tool visualizes suitable components in useful system diagrams, which you can customize to your needs.

You can already access 400 solutions for motor control and drive applications in our tool.

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