PL EN


Preferencje help
Widoczny [Schowaj] Abstrakt
Liczba wyników
Tytuł artykułu

A short review of energy-efficient line-start motor design

Autorzy
Wybrane pełne teksty z tego czasopisma
Identyfikatory
Warianty tytułu
PL
Krótki przegląd efektywności energetycznej silników o bezpośrednim włączaniu
Języki publikacji
EN
Abstrakty
EN
The paper provides an overview of design problems and contemporary research progress in the currently very interesting field of energy-efficient line-start motors. Discussed are problems related to induction motors (1Ms), line-start synchronous reluctance motors and line-start interior permanent magnet synchronous motors (LSIPMSMs). Emphasis is given on smali rated power motors, where the LSIPMSM presents the most interesting alternative for replacing IMs widely used in low-cost single-speed drives with ventilator fans, pumps and compressors.
PL
Artykuł daje przegląd problemów projektowania i postęp we współczesnych badaniach w interesującym obszarze wydajności energetycznej silników bezpośredni włączanych. Dyskutowane są problemy związane z silnikami indukcyjnymi, silnikami synchronicznymi reluktacyjnymi z bezpośrednim włączaniem i takie same z magnesem trwałym. Nacisk zostal położony silniki małej mocy, które skutecznie zastępują silniki indukcyjne w niskokosztowych napędach w wentylatorach, pompach i kompresorach.
Rocznik
Strony
119--122
Opis fizyczny
Bibliogr. 51 poz., rys.
Twórcy
autor
Bibliografia
  • [1] BogIiett i A. et al., Energy-efficient motors: Comparing the performance of die-cast copper squirrel cage induction motors with aluminum cage induction motors, IEEE Industrial Electronics Magazine, 2 (2008), No. 4, 32-37
  • [2] Miljavec D. et al., Rotor-design and on-line starting- performance analysis of a synchronous-reluctance motor, Compel, 28 (2009), No. 3, 570-582
  • [3] Marcič T. et al., Line-starting three- and single-phase interior permanent magnet synchronous motors--direct comparison to induction motors, IEEE Trans. Magn., 44 (2008), No. 11,4413-4416
  • [4] Štumberger G. et al., Comparison of capabilities of reluctance synchronous motor and induction motor, J. Magn.Magn. Mater., 304 (2006), e835-e837
  • [5] Lu Q. F., Ye Y. Y., Design and analysis of large capacity line-start permanent-magnet motor, IEEE Tran. Magn., 44 (2008), No. 11, 4417-4420
  • [6] Craggs J. L., Fabricated aluminum cage construction in large induction motors, IEEE Trans. Ind. Applicat., IA-12 (1976), No. 3,261-267
  • [7] Williamson S., McClay C. I., Optimization of the geometry of closed rotor slots for cage induction motors, IEEE Trans. Ind. Applicat., 32 (1996), No. 3, 560-568
  • [8] Jovanovsk i S.B . , Contribution to the theory of asynchronous performance of synchronous machines with salient poles: Part I, IEEE Tran. Power Ap. Syst., PAS-88 (1969), No. 7,1150-1161
  • [9] Jovanovski S. B., Hammam M.S. A. A., Contribution to the theory of asynchronous performance of synchronous machines with salient poles: Part II, IEEE Tran. Power Ap. Syst., PAS-90 (1971), No. 2, 418-426
  • [10] Honsinger V. B. , Permanent magnet machines: Asychronous operation, IEEE Tran. Power Ap. Syst., PAS-99 (1980), No. 4,1503-1509
  • [11] Honsinge r V. B., Performance of polyphase permanent magnet machines, IEEE Tran. Power Ap. Syst., PAS-99 (1980), No. 4,1510-1518
  • [12] Honsinger V. B., The fields and parameters of interior type AC permanent magnet machines, IEEE Tran. Power Ap. Syst., PAS-101 (1982), No. 4, 867-876
  • [13] Binns K. J., Bernard W. R., Novel design of sell- starting synchronous motor, Proceedings of the lEE, 118 (1971), No. 2, 369-372
  • [14] Binns K. J. et al., Hybrid permanent-magnet synchronous motors, Proceedings of the lEE, 125 (1978), No. 3, 203-208
  • [15] Binns K. J., Jabbar M. A., High-field sell-starting permanent-magnet synchronous motor, lEE Proceedings - Electric Power Applications, vol. 128 (1981), No. 3, 157-160
  • [16] MiIIe r T. J. E., Synchronization of line-start permanent- magnet AC motors, IEEE Tran. Power Ap. Syst., PAS-103 (1984), No. 7,1822-1828
  • [17] Rahman M. A., Osheiba A. M., Performance of large line-start permanent magnet synchronous motors, IEEE Tran.Energy Conver., 5 (1990), No. 1,211-217
  • [18] Zhou P., Rahman M. A., Jabbar M. A., Field circuit analysis of permanent magnet synchronous motors, IEEE Tran. Magn., 30 (1994), No. 4,1350-1359
  • [19] Rahman M. A., Zhou P., Analysis of brushless permanent magnet synchronous motors, IEEE Tran. Ind. Electron., 43 (1996), No. 2, 256-267
  • [20] Rahman M. A. et al., Synchronization process of line-start permanent magnet synchronous motors, Electr. Mach. Pow. Syst., 25 (1997), No. 6, 577-592
  • [21] Jabbar M. A., Liu Z., Dong J., Time-stepping finite- element analysis for the dynamic performance of a permanent magnet synchronous motor, IEEE Tran. Magn., 39 (2003), No. 5,2621-2623
  • [22] KuriharaK. et al., Steady-state performance analysis of permanent magnet synchronous motors including space harmonics, IEEE Tran. Magn., 30 (1994), No. 3, 1306-1315
  • [23] Kurihara K., Rahman M. A., High-efficiency line-start interior permanent-magnet synchronous motors, IEEE Trans. Ind. Appl., 40 (2004), No. 3, 789-796
  • [24] Abdel-Kader F. M., Osheba S. M., Performance analysis of permanent magnet synchronous motors Part I: Dynamic performance, IEEE Trans. Energy Conver., 5.(1990), No. 2, 366-373
  • [25] Miyashita K. et al., Development of a high speed 2-pole permanent magnet synchronous motor, IEEE Tran. Power Ap. Syst., PAS-9 9(1980), No. 6, 2175-2183
  • [26] Knight A. M. et al., The design of high-efficiency line-start motors, IEEE Trans. Ind. Appl., 36 (2000), No. 6, 1555-1562
  • [27] da Silva C. A., Cardoso J. R., Carlson R., Analysis ot a three-phase LSPMM by numerical method, IEEE Tran. Magn., 45 (2009), No. 3, 1792-1795
  • [28] http://www.vacuumschmelze.de/fileadmin/documents/pdf/fipubli kationen/2009/NdFeB _ Magnets_Properties _and _ Application sJevised_13_03_09.pdf{accessed 18th June, 2010}
  • [29] ParasiIit F. et al., Three-phase induction motor efficiency improvements with die-cast copper rotor cage and premium steel, Proceedings SPEEDAM 2004, Capri, Italy, pp. 338-343
  • [30] lstahani A. H., Vaez-Zadeh S., Line start permanent magnet synchronous motors: Challenges and opportunities, Energy, 34 (2009), 1755-1763
  • [31] Marcič T. et al., Determining parameters of a Line-start interior permanent magnet synchronous motor model by the differential evolution, IEEE Trans. Magn., 44 (2008), No. 11, 385-4388
  • [32] Honsinger V. B., I nherently stable reluctance motors having improved performance, IEEE Tran. Power Ap. Syst. PAS-91 (1972), No. 4,1544-1554
  • [33] Fei W., Luk P. C. K., Ma J., Shen J. X., Yang G., A high-performance line-start permanent magnet synchronous motor amended from a small industrial three-phase induction motor, IEEE Tran. Magn., 45 (2009), No. 10,4724-4727
  • [34] Ding T. et al., Design and analysis of different Line-start PM synchronous motors for oil-pump applications, IEEE Trans. Magn., 45 (2009), No. 3, pp. 1816-1819.
  • [35] Peralta-Sanchez E., Smith A. C., Line-start permanent-magnet machines using a canned rotor. IEEE Trans. Ind. Appl., 45 (2009), No. 3, 903-910
  • [36] Dolinar D., Štumberger G., Grcar B., Calculation of the linear induction motor model parameters USIng finie elements, IEEE Tran. Magn., 34 (1998), No. 5, 3640-3643
  • [37] Stelanko S., Stemnik B., Zagradiśnik I. Stray losses due to inter-bar currents of skewed cage induction ~ motors at no-Ioad, Electr. Eng., 82 (2000), 257-262
  • [38] Štumberger B. et al., Accuracy of iron lass calculation in electrical machines by using different iron loss models, J.Magn. Magn. Mater., 254-255 (2003), 269-271
  • [39] Štumberger B. et al., Accuracy of iron loss estilmation In induction motors by using different iron loss models, J. Magn. Magn. Mater. , 272-276 (2004), e1723- e1725
  • [40] Štumberger G. et al., Cross magnetization effect on inductances of linear synchronous reluctance motor under load conditions, IEEE Tran. Magn., 37 (2001), No. 5,3658- 3662
  • [41] Štumberger G. et al., Identification of linear synchronous reluctance motor parameters, IEEE Trans. Ind. Appl., 40 (2004), No. 5,1317-1324
  • [42] Štumberger G. et al., Nonlinear model of linear synchronous reluctance motor for real time applications, Compel, 23 (2004), No. 1, 316-327
  • [43] Štumberger G. et al., Evaluation of experimental methods for determining the magnetically nonlinear characteristics of electromagnetic devices, IEEE Tran. Magn., 41 (2005), No. 10, 030-4032
  • [44] Štumberger G., Štumberger B., Dolinar D., Dynamic two-axis model of a linear synchronous reluctance motor based on current and position-dependent characteristics of flux linkages, J. Magn. Magn. Mater., 304 (2006), e832-e834
  • [45] Štumberger B. et al., Evaluation of saturation and cross-magnetization effects in interior permanent-magnet synchronous motor, IEEE Trans. Ind. Appl., 39 (2003) , No 5, 1264-1271
  • [46] Štumberger B. et al., Torque ripple reductionn In exterior-rotor permanent magnet synchronous motor, J. Magn. Magn. Mater., 304 (2006), e826-e828
  • [47] Hadźiselimović M. et al., Magnetically nonlinear' dynamic model of synchronous motor with permanent magnets, J. Magn. Magn. Mater., 316 (2007), e257-e260
  • [48] Štumberger B. et al., Comparison of torque capability of three-phase permanent magnet synchronous motors with different permanent magnet arrangement, J. Magn. Magn. Mater., 316 (2007), e261-e264
  • [49] Piśek P., Virtić P., Stumberger B., Back EMF and torque characteristic ot N-N and N-S type of rnulti-disc Arial flux permanent magnet synchronous generator, Elektrotechniczny, 84 (2008), No. 12,221-223
  • [50] Lee C. K. et al., Analysis of magnetization of magnet rotor of line start permanent magnet motor, IEEE Tran.39 (2003), No. 3, 1499-1502
  • [51] Lee C. K., Kwon B. I., Design of post-a magnetization system of line start permanent-magnet using FEM, IEEE Tran. Magn., 41 (2005), No. 5, 1928-1931
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BPS3-0020-0088
JavaScript jest wyłączony w Twojej przeglądarce internetowej. Włącz go, a następnie odśwież stronę, aby móc w pełni z niej korzystać.