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Poprawa właściwości grzejnych i możliwości sterowania temperaturą w kuchniach indukcyjnych
Języki publikacji
Abstrakty
Induction cooking has several advantages: best security, pan heating without thermal inertia, etc.... To further improve the performances of this system, in this paper we present a method that yields a better homogeneity of temperature on the pan’s bottom and a good regulation of the temperature. Firstly we propose an inductor structure with four slots containing the coils and we will use the optimization method based on WIPSO technique combined with the 2D FEM method in order to determine the optimal slots distribution and their dimensions .Secondly, a temperature control technique based on the so-called Fixed-band hysteresis (FBHTC) method is used in order to limit the excess temperature on the pan’s bottom and to get the desired value suitable for cooking (150-200°C). The optimized structure of the inductor and the regulation of the temperature permit us to achieve our goal.
W artykule zaprezentowano metodę poprawy jednorodności temperatury spodu podgrzewanego indukcyjknie naczynia. Zaproponowano optymalizację konstrukcjio dławika wytwarzająceo pole elektromagnetyczne. Poprawiono też metodę sterowania temperaturą bazując na algorytmie FBHTC - Fixed-band hysteresis.
Wydawca
Czasopismo
Rocznik
Tom
Strony
83--88
Opis fizyczny
Bibliogr. 12 poz., rys., tab.
Twórcy
- University of Hassiba Benbouali, Chlef 02000, Algeria, Laboratory L.G.E.E.R
autor
- University of Hassiba Benbouali, Chlef 02000, Algeria, Laboratory L.G.E.E.R
autor
- University of Djilali Bounaama, Khemis miliana, Algeria
autor
- IREENA-IUT, CRTT, Bd de l’université, BP 406, 44602 Saint-Nazaire cedex, France
Bibliografia
- [1] Meng LC, Cheng KWE , Luk PCK. (2012). Field analysis of an induction cooker with square 9-coil system by applying diverse exciting patterns. Power Electronics, Machines and Drives (PEMD 2012). 6th IET International Conference on. IET. 2012.
- [2] Acero J, Hernandez PJ, Burdío J M , Alonso R, Barragdan L A. (2005). Simple resistance calculation in litz-wire planar windings for induction cooking appliances. IEEE Transactions on magnetics. 41(4): 1280-1288.
- [3] Kanssab A, Zaoui A, Feliachi M. (2012). Modeling and optimization of induction cooking by the use of magnetothermal finite element analysis and genetic algorithms. Frontiers of Electrical and Electronic Engineering, 7(3): 312-317.
- [4] Allaoui F, Kanssab A, Matallah M, Zaoui A, Feliachi M. (2014). Modelling and Optimization of Induction Cooking by the use of Magneto-thermal Finite Element Analysis and Neural Network. In Materials Science Forum. Trans Tech Publications. 792: 251-259.
- [5] Terrail Y Du, Sabonnadiere JC, Masse P, Coulomb J L. (1984). Nonlinear complex finite elements analysis of electromagnetic field in steady state AC devices. IEEE Transactions on Magnetics. 20(4): 549–552.
- [6] Féliachi M, Develey G. (1991). Magneto-thermal behavior finite element analysis for ferromagnetic materials in induction heating devices. IEEE Transactions on Magnetics. 27(6): 5235–5237.
- [7] Byun J K, Choi K, Roh H S, Hahn S Y. (2000). Optimal design procedure for a practical induction heating cooker. IEEE Transactions on Magnetics, 36(4), 1390-1393.
- [8] Shi Y, Eberhart RC. (1999). Empirical study of particle swarm optimization. In Proceedings of the 1999 Congress on Evolutionary Computation-CEC99 (Cat. No. 99TH8406),IEEE. 3: 1945-1950.
- [9] Sankardoss V, Geethanjali P. (2017). PMDC Motor Parameter Estimation using Bio-Inspired Optimization Algorithms. IEEE Access. 5 : 11244-11254.
- [10] Kavitha K, Neela R. (2016). Comparison of BBO, WIPSO & PSO Techniques for the Optimal Placement of FACTS Devices to Enhance System Security. Procedia Technology. 25: 824-837.
- [11] Belloum K D, Moussi A. (2008). A fixed band hysteresis current controller for voltage source AC chopper. World Academy of Science Engineering and Technology. 45 :350-356..
- [12] Vahedi H, Pashajavid E, Al-Haddad K. (2012). Fixed-band fixed-frequency hysteresis current control used In APFs. In IECON 2012-38th Annual Conference on IEEE Industrial Electronics Society,IEEE. pp. 5944-5948.
Uwagi
Opracowanie rekordu w ramach umowy 509/P-DUN/2018 ze środków MNiSW przeznaczonych na działalność upowszechniającą naukę (2019).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-39603006-c19f-43bf-8aeb-59c156d0f4c0