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Journal articles on the topic 'Polyphase induction motor'

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1

Miljanic, Petar. "Tesla’s polyphase system and induction motor." Serbian Journal of Electrical Engineering 3, no. 2 (2006): 121–30. http://dx.doi.org/10.2298/sjee0603121m.

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2

Anthony, Zuriman, Erhaneli Erhaneli, and Zulkarnaini Zulkarnaini. "Windings Design for Single-phase Induction Motors Base on 4-phase Induction Motor (Case study: identical windings design)." MATEC Web of Conferences 215 (2018): 01023. http://dx.doi.org/10.1051/matecconf/201821501023.

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A 1-phase induction motor usually has a complicated windings design which compares to polyphase induction motor. In addition, a large capacitor start is required to operate the motor. It is an expensive way to operate the motor if it compare to polyphase induction motor. So, a new innovation method is required to make the motor more simple and cheaper. This research is purposed to study a new winding design for a single-phase capacitor motor. Winding design of the motor was conducted to a simple winding design like a 4-phase induction motor that has four identical windings. The comparator motor that use in this study was a Three-phase induction motor with data 1400 RPM, 1.5 HP, 50Hz, 380/220V, Y/Δ, 2.74/4.7A, 4 poles, that had the same current rating which the proposed method. The result showed that the motor design on this proposed method could be operated at 88.18 % power rating with power factor close to unity.
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3

Brauer, J., H. Sadeghi, and R. Oesterlei. "Polyphase induction motor performance computed directly by finite elements." IEEE Transactions on Energy Conversion 14, no. 3 (1999): 583–88. http://dx.doi.org/10.1109/60.790918.

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4

Koussaila, Iffouzar, Khaldi Lyes, Kamal Himour, Deboucha Abdelhakim, Houari Azeddine, Ghedamsi Kaci, and Benkhoris Mohamed Fouad. "Impact of Polyphase Induction Motor on Photovoltaic Water Pumping System." Journal Européen des Systèmes Automatisés 53, no. 6 (December 23, 2020): 763–70. http://dx.doi.org/10.18280/jesa.530602.

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An improved dynamic behavior of water pumping system is presented in this paper. The system consists of a seven-phase induction motor powered by a photovoltaic generator (PVG) and a battery bank, via two static converters controlled independently. A boost converter based on fuzzy logic controller is utilized to adapt the voltage of the photovoltaic generator in order to extract maximum power. A three levels neutral point clamped inverter (NPC) is introduced to attain a low voltage harmonic distortion in the system. In addition, an improved direct field oriented control with minimizing non-sequential currents for the seven-phase induction motor using fuzzy logic filter is implemented. To verify and validate the proposed system, an optimal operating point is chosen to locate the dynamic and static operating limits of the system. Moreover, the proposed system is simulated and analyzed. The minimization of the non-sequential currents component induces a quality energy improvement with minimizing of the Joule losses, which increase the system efficiency. The use of the seven-phase machine brings a degree of additional freedom to the system, its tolerance to faults is a capital issue for the isolated places.
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5

Ozaki, Seiichi. "Characteristics of polyphase induction motor driven by single-to-poly phase converter." IEEJ Transactions on Industry Applications 108, no. 1 (1988): 83–89. http://dx.doi.org/10.1541/ieejias.108.83.

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6

Carlson, Renato, Cláudia A. da Silva, Nelson Sadowski, and Michel Lajoie-Mazenc. "An analysis of inter-bar currents on a polyphase cage induction motor." Sba: Controle & Automação Sociedade Brasileira de Automatica 15, no. 4 (December 2004): 476–84. http://dx.doi.org/10.1590/s0103-17592004000400011.

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This work uses a methodology based on 2D-Finite Element Method (FEM) and on the Circuits Theory (Independent Currents Method) to analyze the inter-bar currents on the rotor of cage induction motors. The Multi-Slice Technique is used to consider the skewing effect. Three conditions are considered: one inter-bar resistance, two inter-bar resistances and three inter-bar resistances. The results show the distribution of currents in the rotor bars, short-circuit rings and transversal resistances at a given time. The fundamental component of the inter-bar and surrounding bar currents are shown to help understanding the phenomenon.
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7

Alan, I., and T. A. Lipo. "Control of a polyphase induction generator/induction motor power conversion system completely isolated from the utility." IEEE Transactions on Industry Applications 30, no. 3 (1994): 636–47. http://dx.doi.org/10.1109/28.293712.

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8

McElveen, Robbie, MIke Melfi, and James McFarland. "Improved Characterization of Polyphase Induction Motor Losses: Test Standards Must Be Modified to Improve Efficiency Optimization." IEEE Industry Applications Magazine 25, no. 6 (November 2019): 61–68. http://dx.doi.org/10.1109/mias.2018.2875208.

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9

Yeh, Chia-Chou, Gennadi Y. Sizov, Ahmed Sayed-Ahmed, Nabeel A. O. Demerdash, Richard J. Povinelli, Edwin E. Yaz, and Dan M. Ionel. "A Reconfigurable Motor for Experimental Emulation of Stator Winding Interturn and Broken Bar Faults in Polyphase Induction Machines." IEEE Transactions on Energy Conversion 23, no. 4 (December 2008): 1005–14. http://dx.doi.org/10.1109/tec.2008.2001443.

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10

Kim, Kwang-Soo, and Won-Ho Kim. "A Study on the Basic Design Process of Polyphase Induction Motor Using Automatic Selection of Magnetic Flux Density and Number of Turns." Journal of the Korean Society for Railway 21, no. 4 (May 31, 2018): 342–48. http://dx.doi.org/10.7782/jksr.2018.21.4.342.

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11

Kluszczyński, Krzysztof. "Multi-speed polyphase induction motors." International Journal of Applied Electromagnetics and Mechanics 15, no. 1-4 (December 21, 2002): 149–54. http://dx.doi.org/10.3233/jae-2002-507.

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12

Shenkman, A. L., and M. Chertkov. "Experimental method for synthesis of generalized thermal circuit of polyphase induction motors." IEEE Transactions on Energy Conversion 15, no. 3 (2000): 264–68. http://dx.doi.org/10.1109/60.875491.

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13

Nilsson, N. E. "A comparison of ANSI and IEC standards for power station polyphase induction (asynchronous) motors." IEEE Transactions on Energy Conversion 11, no. 3 (1996): 500–507. http://dx.doi.org/10.1109/60.537000.

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14

Carlson, R., C. A. da Silva, N. Sadowski, Y. Lefevre, and M. Lajoie-Mazenc. "Analysis of the effect of inter-bar currents on the performance of polyphase cage-induction motors." IEEE Transactions on Industry Applications 39, no. 6 (November 2003): 1674–80. http://dx.doi.org/10.1109/tia.2003.818995.

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15

Pai, R. M. "Polyphase Linear Induction Motors with Non-Magnetic Secondaries: A Review on Longitudinal-End and Transverse-Edge Effects." Electric Machines & Power Systems 15, no. 2 (October 1988): 73–80. http://dx.doi.org/10.1080/07313568808909319.

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16

Takahashi, Yasuhito, Koji Fujiwara, Tadashi Tokumasu, Takeshi Iwashita, and Hiroshi Nakashima. "Parallel TP-EEC Method Based on Polyphase Time-Periodic Condition for Magnetic Field Analysis of Induction Motors." IEEE Transactions on Magnetics 56, no. 3 (March 2020): 1–5. http://dx.doi.org/10.1109/tmag.2019.2950100.

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17

Bangura, J. F., R. J. Povinelli, N. A. O. Demerdash, and R. H. Brown. "Diagnostics of eccentricities and bar/end-ring connector breakages in polyphase induction motors through a combination of time-series data mining and time-stepping coupled fe~state-space techniques." IEEE Transactions on Industry Applications 39, no. 4 (July 2003): 1005–13. http://dx.doi.org/10.1109/tia.2003.814582.

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18

Povinelli, R. J., J. F. Bangura, N. A. O. Demerdash, and R. H. Brown. "Diagnostics of bar and end-ring connector breakage faults in polyphase induction motors through a novel dual track of time-series data mining and time-stepping coupled FE-state space modeling." IEEE Transactions on Energy Conversion 17, no. 1 (March 2002): 39–46. http://dx.doi.org/10.1109/60.986435.

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19

Povinelli, R. J., J. F. Bangura, N. A. O. Demerdash, and R. H. Brown. "Diagnostics of Bar and End-Ring Connector Breakage Faults in Polyphase Induction Motors through a Novel Dual Track of Time-Series Data Mining and Time-Stepping Coupled FE-State Space Modeling." IEEE Power Engineering Review 22, no. 2 (2002): 58–59. http://dx.doi.org/10.1109/mper.2002.4311988.

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20

Jaiswal, Vinay. "CONTRIBUTION OF SPATIAL HARMONICS AND TOOTH PULSATION IN IRON LOSS OF POLYPHASE INDUCTION MOTOR." International Journal of Power and Energy Systems 35, no. 3 (2015). http://dx.doi.org/10.2316/journal.203.2015.3.203-6187.

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21

Das, Sharmili, Rohit Siddharth Dhabarde, and V. R. K. Raju. "Analytical modelling of electromagnetic field and performance investigation of a rectangular linear electromagnetic stirrer." COMPEL - The international journal for computation and mathematics in electrical and electronic engineering ahead-of-print, ahead-of-print (August 26, 2021). http://dx.doi.org/10.1108/compel-07-2020-0254.

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Purpose The purpose of this study is to develop a novel rectangular linear induction motor as an electromagnetic stirrer (EMS) using analytical followed by a numerical approach. The rectangular linear electromagnetic stirrer (RLEMS) is mainly developed for rectangular slab and billet as the end product. Design/methodology/approach A two-dimensional analytical approach for evaluating flux density distribution within the mold is established for RLEMS structure. Subsequently, the average stirring force within the mold is estimated from those field variables. The paper presents an analytical and numerical model for calculating the stirring force and counters the end and edge effects of linear-type EMS. Magnetic field and force profile within the mold due to polyphase rectangular stator distribution has been done with the help of Maxwell’s equation with appropriate boundary conditions by using Fourier transform and inverse Fourier transform. Subsequently, a numerical study has been carried out using a coupled thermal and electromagnetic model. Findings The present study investigates the physical phenomena during the solidification process because of an induced electromagnetic field and is able to extract all the electromagnetic field variables under different operating conditions, and, subsequently, provides an insight into the actual happening within the mold. Originality/value It provides the analytical method for solving the stirring force of the proposed new RLEMS structure by addressing the smooth and efficient variation of field and velocity profile near the corner of the mold and improves the quality of end product.
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22

"Basics of electric motors: including polyphase induction and synchronous motors." Choice Reviews Online 27, no. 04 (December 1, 1989): 27–2121. http://dx.doi.org/10.5860/choice.27-2121.

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