Inductance and resistance measurement method for vessel detection and coil powering in all-surface inductive heating systems composed of outer squircle coils
In this work, we investigate a method proposed for vessel detection and coil powering in an all-surface inductive heating system composed of outer squircle coils. Besides conventional circular coils, coils with different shapes such as outer squircle coils are used for and enable efficient all-surfa...
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sg-ntu-dr.10356-865122020-03-07T13:57:29Z Inductance and resistance measurement method for vessel detection and coil powering in all-surface inductive heating systems composed of outer squircle coils Kilic, Veli Tayfun Unal, Emre Demir, Hilmi Volkan School of Electrical and Electronic Engineering Inductance Heating Equipment In this work, we investigate a method proposed for vessel detection and coil powering in an all-surface inductive heating system composed of outer squircle coils. Besides conventional circular coils, coils with different shapes such as outer squircle coils are used for and enable efficient all-surface inductive heating. Validity of the method, which relies on measuring inductance and resistance values of a loaded coil at different frequencies, is experimentally demonstrated for a coil with shape different from conventional circular coil. Simple setup was constructed with a small coil to model an all-surface inductive heating system. Inductance and resistance maps were generated by measuring coil’s inductance and resistance values at different frequencies loaded by a plate made of different materials and located at various positions. Results show that in an induction hob for various coil geometries it is possible to detect a vessel’s presence, to identify its material type and to specify its position on the hob surface by considering inductance and resistance of the coil measured on at least two different frequencies. The studied method is important in terms of enabling safe, efficient and user flexible heating in an all-surface inductive heating system by automatically detecting the vessel’s presence and powering on only the coils that are loaded by the vessel with predetermined current levels. Published version 2017-11-16T08:47:40Z 2019-12-06T16:23:42Z 2017-11-16T08:47:40Z 2019-12-06T16:23:42Z 2017 Journal Article Kilic, V. T., Unal, E., & Demir, H. V. (2017). Inductance and resistance measurement method for vessel detection and coil powering in all-surface inductive heating systems composed of outer squircle coils. AIP Advances, 7(5), 056645-. 2158-3226 https://hdl.handle.net/10356/86512 http://hdl.handle.net/10220/44059 10.1063/1.4975354 en AIP Advances © 2017 Author(s). All article content, except where otherwise noted, is licensed under a Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/). 4 p. application/pdf |
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Inductance Heating Equipment Kilic, Veli Tayfun Unal, Emre Demir, Hilmi Volkan Inductance and resistance measurement method for vessel detection and coil powering in all-surface inductive heating systems composed of outer squircle coils |
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In this work, we investigate a method proposed for vessel detection and coil powering in an all-surface inductive heating system composed of outer squircle coils. Besides conventional circular coils, coils with different shapes such as outer squircle coils are used for and enable efficient all-surface inductive heating. Validity of the method, which relies on measuring inductance and resistance values of a loaded coil at different frequencies, is experimentally demonstrated for a coil with shape different from conventional circular coil. Simple setup was constructed with a small coil to model an all-surface inductive heating system. Inductance and resistance maps were generated by measuring coil’s inductance and resistance values at different frequencies loaded by a plate made of different materials and located at various positions. Results show that in an induction hob for various coil geometries it is possible to detect a vessel’s presence, to identify its material type and to specify its position on the hob surface by considering inductance and resistance of the coil measured on at least two different frequencies. The studied method is important in terms of enabling safe, efficient and user flexible heating in an all-surface inductive heating system by automatically detecting the vessel’s presence and powering on only the coils that are loaded by the vessel with predetermined current levels. |
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School of Electrical and Electronic Engineering |
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School of Electrical and Electronic Engineering Kilic, Veli Tayfun Unal, Emre Demir, Hilmi Volkan |
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Kilic, Veli Tayfun Unal, Emre Demir, Hilmi Volkan |
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Kilic, Veli Tayfun |
title |
Inductance and resistance measurement method for vessel detection and coil powering in all-surface inductive heating systems composed of outer squircle coils |
title_short |
Inductance and resistance measurement method for vessel detection and coil powering in all-surface inductive heating systems composed of outer squircle coils |
title_full |
Inductance and resistance measurement method for vessel detection and coil powering in all-surface inductive heating systems composed of outer squircle coils |
title_fullStr |
Inductance and resistance measurement method for vessel detection and coil powering in all-surface inductive heating systems composed of outer squircle coils |
title_full_unstemmed |
Inductance and resistance measurement method for vessel detection and coil powering in all-surface inductive heating systems composed of outer squircle coils |
title_sort |
inductance and resistance measurement method for vessel detection and coil powering in all-surface inductive heating systems composed of outer squircle coils |
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2017 |
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https://hdl.handle.net/10356/86512 http://hdl.handle.net/10220/44059 |
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