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Can I read Design and Finite Element Analysis of a 6/4 Pole Multi-Layer Fully Pitched Switched Reluctance Motor to Reduce Torque Ripple on EtoBox?

Design and Finite Element Analysis of a 6/4 Pole Multi-Layer Fully Pitched Switched Reluctance Motor to Reduce Torque Ripple by Cihan Sahin; Sinan Basaran is a Engineering article available to read on EtoBox.

What is Design and Finite Element Analysis of a 6/4 Pole Multi-Layer Fully Pitched Switched Reluctance Motor to Reduce Torque Ripple about?

CONTENTS 1. Introduction 2. Conventional and Fully Pitched SRM 3. Multi-layer SRMS 4. Determining the Working Range of MFP-SRM Layers 5. Magnetostatic Analysis and Results of MFP-SRM 6. Summary and Conclusions ReferencesAbstract--In this study, the design and analysis of multi-layer fully pitched winding switched reluctance motor (MFP-SRM) for general use (submersible pump, electric vehicles, etc.) have been performed. It is seen that the multi-layer switched reluctance motor (SRM) has higher output power when compared to the single-layer SRM. In multi-layer SRM, the motors in the layers are electromagnetically independent of each other although they are identically the same motors with the same characteristics in terms of performance and geometry. Each layer of the MFP-SRM which is designed in this study consists of a 6/4 pole fully pitched SRM (FP-SRM) and these motors are magnetically independent of each other. In the MFP-SRM, which is designed as a double layer, there is a 15 phase difference between the rotor position angles and torque profile curves of each layer. With the phase difference that changes depending on the number of layers, each layer contributes to the total tor

Who reads Design and Finite Element Analysis of a 6/4 Pole Multi-Layer Fully Pitched Switched Reluctance Motor to Reduce Torque Ripple?

It is typically read by researchers, students, and practitioners in Engineering.

Author
Cihan Sahin; Sinan Basaran
Publisher
Informa UK Limited
Published
2023
Language
EN
Field
Engineering (Physical Sciences)