2020
DOI: 10.1109/ojies.2020.3016242
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Electromagnetic Modeling Techniques for Switched Reluctance Machines: State-of-the-Art Review

Abstract: Switched Reluctance Machines (SRMs) are gaining more attention due to their simple and rugged construction, low manufacturing cost, and high-speed operation capability. An electromagnetic model of the machine is needed in the design and analysis processes. The required accuracy level of the model depends mainly on the application. A high-fidelity model is required to achieve a good design and predict the performance accurately. However, it requires high computational cost and longer simulation time. Other fast… Show more

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Cited by 18 publications
(13 citation statements)
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“…SRMs electromagnetic modelling is a well-studied field, and options for an accurate estimation are available. A comprehensive review of electromagnetic models is presented in [20]. In terms of discretization, the most common approach is the forward Euler approximation due to its simplicity and good performance.…”
Section: Recent Developments Of Mpcmentioning
confidence: 99%
“…SRMs electromagnetic modelling is a well-studied field, and options for an accurate estimation are available. A comprehensive review of electromagnetic models is presented in [20]. In terms of discretization, the most common approach is the forward Euler approximation due to its simplicity and good performance.…”
Section: Recent Developments Of Mpcmentioning
confidence: 99%
“…Torque production in an SRM is entirely from the saliency in the motor geometry, and PMs are not needed. The main advantages of SRM over PMSM are lower cost, simple construction, capability to operate at higher temperature and a wider speed range [3]. The main challenges in SRM are higher torque ripple and higher acoustic noise and vibration [1], [3].…”
Section: Introductionmentioning
confidence: 99%
“…The main advantages of SRM over PMSM are lower cost, simple construction, capability to operate at higher temperature and a wider speed range [3]. The main challenges in SRM are higher torque ripple and higher acoustic noise and vibration [1], [3]. Torque ripple can be reduced by choosing a proper pole configuration [4] and by changing the shape of the excitation current using a torque sharing function (TSF) [5].…”
Section: Introductionmentioning
confidence: 99%
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“…Isso faz com que a máquina não dependa de ímãs ou correntes induzidas para excitação rotórica, configurando uma grande vantagem quando comparada a máquinas de indução e de ímãs permanentes, por exemplo. Somando-se a isso, o SRM apresenta baixos custos de fabricação e um processo de produção simplificado [1]- [5].…”
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