|Author||Walter, J. ♦ Ceglia, G. ♦ Guzman, V. ♦ Gimenez, M.|
|Source||IEEE Xplore Digital Library|
|Publisher||Institute of Electrical and Electronics Engineers, Inc. (IEEE)|
|Subject Domain (in DDC)||Natural sciences & mathematics ♦ Physics ♦ Electricity & electronics ♦ Technology ♦ Engineering & allied operations ♦ Applied physics|
|Subject Keyword||Coils ♦ Pulse measurements ♦ Density measurement ♦ PID ♦ ZCS ♦ Power system modeling ♦ Pulse modulation ♦ Power Density Modulator ♦ Resonant converter ♦ Induction heating ♦ Power measurement ♦ Heating ♦ Delta ♦ Resonance ♦ Temperature control ♦ Mathematical model|
|Abstract||This work presents the mathematical modeling of a power controlled, resonant operated inductive heating system. Experimentally the power is measured over the heating coil and processed to have the real power as a feedback signal that manages a pulse density (delta) modulator topology with a PID compensation network. The results shows that it is possible to directly control the real output power of the inverter, opening the possibility to obtain information about the energy transferred to the load in situations where this is critical, for example, in precise heating processes.|
|Description||Author affiliation: Univ. Simon Bolivar, Sartenejas-Baruta (Walter, J.; Ceglia, G.; Guzman, V.; Gimenez, M.)|
|Educational Role||Student ♦ Teacher|
|Age Range||above 22 year|
|Educational Use||Research ♦ Reading|
|Education Level||UG and PG|
|Learning Resource Type||Article|
|Rights Holder||EPE Association|
|Size (in Bytes)||1.11 MB|
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