Efficiency optimization for phase controlled multi-source microwave oven

A solid-state microwave generators system is considered as an alternative to the magnetron, in order to inject electromagnetic energy into the cavity of a microwave oven for domestic use. Over current devices, the use of solid state technology allows one to control the frequency and phase of the ele...

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Published inInternational journal of applied electromagnetics and mechanics Vol. 44; no. 2; pp. 235 - 241
Main Authors Więckowski, A., Korpas, P., Krysicki, M., Dughiero, F., Bullo, M., Bressan, F., Fager, C.
Format Journal Article
LanguageEnglish
Published 01.01.2014
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Abstract A solid-state microwave generators system is considered as an alternative to the magnetron, in order to inject electromagnetic energy into the cavity of a microwave oven for domestic use. Over current devices, the use of solid state technology allows one to control the frequency and phase of the electromagnetic field generated.Considering a simplified cavity with 2 solid state sources, the influence of the electrical parameters on maximum efficiency obtainable in the process of microwave heating is investigated. By varying the frequency, different values of optimal phases and different values of maximum efficiency are detected.Moreover, the procedure is repeated with varying the position of one source port and the influence of geometry on the system performance is evaluated.Our results demonstrate that the ability to control the electrical quantities of a microwave heating process makes it possible to obtain better results in terms of energy efficiency over the current poorly controllable systems.
AbstractList A solid-state microwave generators system is considered as an alternative to the magnetron, in order to inject electromagnetic energy into the cavity of a microwave oven for domestic use. Over current devices, the use of solid state technology allows one to control the frequency and phase of the electromagnetic field generated. Considering a simplified cavity with 2 solid state sources, the influence of the electrical parameters on maximum efficiency obtainable in the process of microwave heating is investigated. By varying the frequency, different values of optimal phases and different values of maximum efficiency are detected. Moreover, the procedure is repeated with varying the position of one source port and the influence of geometry on the system performance is evaluated. Our results demonstrate that the ability to control the electrical quantities of a microwave heating process makes it possible to obtain better results in terms of energy efficiency over the current poorly controllable systems.
Author Krysicki, M.
Fager, C.
Bressan, F.
Korpas, P.
Bullo, M.
Więckowski, A.
Dughiero, F.
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  surname: Fager
  fullname: Fager, C.
  organization: Department of Microtechnology and Nanoscience, Chalmers University of Technology, Göteborg, Sweden
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CitedBy_id crossref_primary_10_3390_foods10091986
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Dughiero, Fabrizio
Baake, Egbert
Di Barba, Paolo
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  organization: University of Pavia, Pavia, Italy
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  organization: University of Padua, Padua, Italy
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  organization: University of Padua, Padua, Italy
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Snippet A solid-state microwave generators system is considered as an alternative to the magnetron, in order to inject electromagnetic energy into the cavity of a...
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StartPage 235
SubjectTerms Control systems
Efficiency optimization
Heating
Holes
microwave oven
Microwaves
Optimization
Ovens
phase control
Solid state
solid-state technology
Stability
Title Efficiency optimization for phase controlled multi-source microwave oven
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