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Warianty tytułu
Wpływ wyższych harmonicznych na straty w maszynie indukcyjnej
Języki publikacji
Abstrakty
The paper summarizes the power loss results in induction machines supplied with distorted voltage. The voltage waveform contained the fifth and seventh harmonics components of adjustable level in the range of 0% to 30%. The influence of the harmonic content on the core and windings losses is of particular interest. The paper investigates the additive impacts of basic and additional losses resulting from distorted power supply conditions.
Artykuł przedstawia wyniki pomiarów strat silnika indukcyjnego zasilanego ze źródła napięcia odkształconego. Napięcie zawierało, prócz składowej podstawowej, także piątą i siódmą składową harmoniczną w zakresie od 0% do 30% w stosunku do składowej podstawowej. Badany był wpływ zawartości składowych na straty w rdzeniu i straty w wirniku silnika. Sprawdzono również czy straty powodowane zawartością poszczególnych składowych są addytywne.
Czasopismo
Rocznik
Tom
Strony
13--24
Opis fizyczny
Bibliogr. 19 poz., il., wykr.
Twórcy
autor
- Department of Power Electronics and Energy Control Systems, Faculty of Electrical Engineering, Automatics, Computer Science and Biomedical Engineering, AGH University of Science and Technology
autor
- Department of Power Electronics and Energy Control Systems, Faculty of Electrical Engineering, Automatics, Computer Science and Biomedical Engineering, AGH University of Science and Technology
Bibliografia
- [1] Wenping C., Assessment of induction machine efficiency with comments on new standard IEC 60034–2–1, International Conference on Electrical Machines, Vilamoura, Algarve, Portugal 6–9 Sept. 2008, 1–6.
- [2] Cummings P., Estimating effect of system harmonics on losses and temperature rise of squirrel–cage motors, IEEE T IndAppl, 22, 1986, 1121–1126.
- [3] Gała M., Jagieła K., Kepinski M., Rak J., Influence of high power dc converter drives on operating parameters of induction machines, ZeszytyProblemowe – Maszyny Elektryczne, 76, 2007, 35–40.
- [4] Polak A., Additional parasitical effects appearing in induction motors supplied with distorted voltage, Prace Naukowe Instytutu Maszyn, Napedów i Pomiarów Elektrycznych Politechniki Wrocławskiej, 48, 2000, 21–28.
- [5] Corino S., Romero E., Mantilla LF., How the efficiency of induction motor is measured?, International Conference On Renewable Energies And Power Quality ICREPQ’08, Santander, Spain, 12–14 March 2008, 352–354.
- [6] Debruyne C., Desmet J., Derammelaere S., Vandevelde L., Derating factors for direct online induction machines when supplied with voltage harmonics: a critical view, IEEE International Electric Machines & Drives Conference (IEMDC), Niagara Falls, ON, Canada 14–17 May 2011, IEEE, 1048–1052.
- [7] Knight A.M., Zhan Y., Identification of flux density harmonics and resulting iron losses in induction machines with nonsinusoidal supplies, IEEE T Magn, 44, 6, 2008, 1562–1565.
- [8] Manyage M.J., Mthombeni T.L., Pillay P., Boglietti A., Improved prediction of core losses in induction motors, Electric Machines & Drives Conference, IEEE, Antalya, Turkey, 3–5 May 2007, 531–536.
- [9] Bertotti G., General properties of power posses in soft ferromagnetic materials, IEEE T Magn, 24, 1988, 621–630.
- [10] Bertotti G., Dynamic generalization of the scalar preisach model of hysteresis, IEEE T Magn, 28, 1992, 2599–2601.
- [11] Bertotti G., Boglietti A., Chiampi M., Chiarabaglio D., Fiorillo F., Lazzari M., An improved estimation of iron losses in rotating electrical machines, IEEE T Magn, 27, 1991, 5007–5009.
- [12] Fiorillo F., Novikov A., An improved approach to power losses in magnetic laminations under nonsinusoidal induction waveform, IEEE T Magn, 26, 1990, 2904–2910.
- [13] Yamazaki K., Fukushima N., Iron–loss modeling for rotating machines: comparison between bertotti’s three–term expression and 3–D eddy–current analysis, IEEE T Magn, 46, 8, 2010, 3121–3124.
- [14] Sadowski N., Lajoie-Mazenc M., Bastos J.P.A., Ferreira da Luz M.V., Kuo–Peng P., Evaluation and analysis of iron losses in electrical machines using the rain–flow method, IEEE T Magn, 36, 4, 2000, 1923–1926.
- [15] Krings A., Soulard J., Overview and comparison of iron loss models for electrical machines, Ecologic Vehicles Renewable Energies EVER, Monte Carlo, Monako, 25–28 March 2010, 113–119.
- [16] Czarnecki L.S., Currents’ physical components (CPC) concept: a fundamental of power theory, International School on Nonsinusoidal Currents and Compensation ISNCC, Lagow, Poland, 10–13 June 2008, 1–11.
- [17] McClay C., Williamson S., The variation of cage motor losses with skew, IEEE T IndAppl, 36, 6, 2000, 1563–1570.
- [18] Yamazaki K., Kuramochi S., Additional Harmonic Losses of Induction Motors by PWM Inverters: Comparison between Result of Finite Element Method and IEC/TS 60034, International Conference on Electrical Machines (ICEM), Marseille, France, 2–5 September 2012, 1552–1558.
- [19] Gnaciński P., Pepliński M., Szweda M., Influence of subharmonics and interharmonics voltage on curents in windings of an induction machine, Zeszyty Problemowe – Maszyny Elektryczne, 92, Katowice 2011, 67–71.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-74fb68b0-c1aa-4b72-8ea0-5c68013c65fd