Results 301 to 310 of about 86,661 (338)
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Pulsating losses in synchronous reluctance motor
Seventh International Conference on Electrical Machines and Drives, 1995The aim of this paper is to calculate the pulsating losses at laminated pole-faces in synchronous reluctance motors. To determine these losses, it is necessary to calculate the values of magnetic flux density on both sides of the air gap: near the rotor surface and near the stator surface.
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CAPACITOR BRAKING OF SYNCHRONOUS RELUCTANCE MOTORS
Electric Machines & Power Systems, 1993ABSTRACT Capacitor braking, a well-known low-loss braking method of Induction ma-chines, Is described in connection with reluctance machines. To represent the main features of capacitor braking of synchronous reluc-tance motors, three dimenslonless quantities are introduced: a frequency parameter, a reactance parameter and a resistance parameter.
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Technology comparison of induction motor and synchronous reluctance motor
IECON 2017 - 43rd Annual Conference of the IEEE Industrial Electronics Society, 2017Electric motors play an important role in global efforts to reduce energy consumption as they account for almost half of the total electrical energy usage in the world. The energy consumption of electric motors can be reduced by using more efficient motors and by applying frequency converters to feed the motors, thereby enabling accurate control ...
Hannu Karkkainen +4 more
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Torque ripple in synchronous reluctance motor
MELECON '98. 9th Mediterranean Electrotechnical Conference. Proceedings (Cat. No.98CH36056), 2002The paper describes the calculation and reduction of torque ripple in a synchronous reluctance motor (SRM). The analysis is based on finite element modeling and proposes a method of dynamic torque characteristic calculation. The mutual connection between static and dynamic torque characteristic is also established.
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Synchronous reluctance motor: Design and experimental research
2018 X International Conference on Electrical Power Drive Systems (ICEPDS), 2018In this paper, the results of development and experimental research of a synchronous reluctance motor (SynRM) SRM160M6ie2 are presented. The design of the machines was carried out in JSC “NIPTIEM” using a technique based on the use of finite element modeling of the magnetic field.
A.V Zakharov, S.I Malafeev, A.L Dudulin
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Can synchronous reluctance motor be compared with induction motor?
Proceedings of 8th Mediterranean Electrotechnical Conference on Industrial Applications in Power Systems, Computer Science and Telecommunications (MELECON 96), 2002The aim of the paper is to compare the performance of a synchronous reluctance motor (SRM) and an induction motor with the same stator frame and windings. The comparison is based on output power, power factor, efficiency and over loading. The basic equations for synchronous reluctance motor characteristic calculation are also derived.
D. Miljavec, P. Jereb
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A permanent magnet‐assisted synchronous reluctance motor
Electrical Engineering in Japan, 2003AbstractPermanent magnet motors have attracted a lot of attention recently for their potential for saving energy. However, they are only used for certain applications because the magnets are expensive. This paper discusses the optimum design of the low‐cost, highly efficient magnet‐ assisted reluctance motors with a minimum amount of magnets. The motor
Hiroshi Murakami +3 more
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Automated Design of Synchronous Reluctance Motors
2016Despite the research effort of the last two decades in the field of synchronous reluctance machine design and the recent introduction of commercial products from major machine manufacturers, a standard procedure for their design is not yet established. While the stator is like that of a standard induction machine, the rotor geometry is non-conventional
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Nigerian Journal of Technical Education
The models of five-phase various permanent magnet-assisted synchronous machines and the non-permanent assisted synchronous motor are presented.The machines are modelled for directly online starting usingACEBD winding arrangement. The models are modelled with a permanent assist of sixteen rectangular-shaped magnet placed in the flux barriers.
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The models of five-phase various permanent magnet-assisted synchronous machines and the non-permanent assisted synchronous motor are presented.The machines are modelled for directly online starting usingACEBD winding arrangement. The models are modelled with a permanent assist of sixteen rectangular-shaped magnet placed in the flux barriers.
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IEEE transactions on industrial electronics (1982. Print), 2021
Meimei Xu +4 more
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Meimei Xu +4 more
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