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Design and comparative analysis of three phase, four phase and six phase switched reluctance motor topologies for electrical vehicle propulsion

TLDR
This paper elaborates on the design methodology and the analysis of various phases of operation of SRMs, and the finite element method of optimization is used to enhance motor performance.
Abstract
Switched reluctance motor (SRM) is attracting the scientific community in recent days because of its special structural benefits. Good research work has been conducted on this machine since the ages. It has evolved as an alternative to the conventional electrical machines in variable speed drives due to rugged architecture, high-speed operation, four quadrants, lack of magnet, and adaptability to harsh surroundings. This paper reviews different topologies of SRM for electric vehicle (EV) application and a comparative study of suitable machines for electric vehicle propulsion. This paper elaborates on the design methodology and the analysis of various phases of operation of SRMs. During the design procedure, the finite element method (FEM) of optimization is used to enhance motor performance. In this study, the three different phase (3, 4 and 6) motors are analyzed in machine design software and finite element analysis outcomes and SRM simulation approach are discussed.

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Citations
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Journal ArticleDOI

Closed-loop speed control of switched reluctance motor drive fed from novel converter with reduced number of switches

TL;DR: This paper presents a novel converter configuration with fewer for switched reluctance motor (SRM) drive that insists for less number of switches compared to conventional asymmetrical type of converter configuration for switch reluctance motor.
Journal ArticleDOI

Optimizing stator/rotor pole ARC for torque and economy in electric vehicle switched reluctance motors

TL;DR: In this article , the stator/rotor pole arc of an 8/6 switching reluctance motor (SRM) was used to increase the maximum and average torque with (27.24, 35.98, 49.42, 60.14%), (12.59, 45.19, 47.87, 48.92%), and (0.35, 0.61, 1.08, 1
Journal ArticleDOI

Simulation and Analysis of Steady-State and Dynamic Performance of Asymmetric Half Bridge Converter-Fed SRM using Finite Element Analysis

TL;DR: In this article , the authors proposed an appropriate driver configuration for SRM and interface it with the motor, which is already designed and analyzed using ANSYS Maxwell tool box, and the design and analysis of the converter are carried out using the ANsYS Simplorer tool box.
References
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Journal ArticleDOI

Advantages of switched reluctance motor applications to EV and HEV: design and control issues

TL;DR: In this paper, the authors investigate the capabilities of the switched reluctance motor (SRM) for electric vehicle and hybrid electric vehicle applications, which is carried out in two steps: the first step involves the machine design and the finite-element analysis to obtain the static characteristic of the motor; the second step is used in the development of a nonlinear model to investigate the dynamic performance of the designed motor.
Journal ArticleDOI

Opportunities and Challenges of Switched Reluctance Motor Drives for Electric Propulsion: A Comparative Study

TL;DR: In this paper, a comprehensive review of electric machines (EMs) that includes various new switched reluctance machine topologies in addition to conventional EMs such as PMSM, induction machine, synchronous reluctance machine (SynRel), and PM-assisted SynRel is presented.
Journal ArticleDOI

A Review on Machine Topologies and Control Techniques for Low-Noise Switched Reluctance Motors in Electric Vehicle Applications

TL;DR: A technical overview for low-noise switched reluctance motor (SRM) drives in electric vehicle (EV) applications is presented, including the machine topology improvement and control strategy design for radial vibration mitigation and torque ripple reduction and the research status on this topic is summarized and forecast research hotspots are presented.
Journal ArticleDOI

Rare-earth-free propulsion motors for electric vehicles: A technology review

TL;DR: In this paper, the state-of-the-art of the electric motor technologies for vehicular propulsion systems is reviewed, where the features required, design considerations and restrictions are addressed.
Journal ArticleDOI

Implementation of the Three-Phase Switched Reluctance Machine System for Motors and Generators

TL;DR: In this paper, two three-phase switched reluctance machine systems are presented, one is the dual motors drive for the electric locomotive traction; the other is the variable-speed generator system for wind power applications.
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