Abstract–This paper presents the configuration of a prototype induction cooker. Effective control scheme is incorporated in the voltage-fed H-bridge series resonant converter, which is based on an auto-frequency tracking strategy. The proposed control strategy ensures stable operation characteristics of overall converter system and ZVS (Zero Voltage Switching) operation as well as power regulation. The operation principle and the proposed control scheme are described. Also, the experimental results and the performance characteristics are shown for a prototype induction cooking system rated at 15kW. Keywords–Resonant converter, induction cooking, coil, phase angle, frequency trackin
In recent years, induction heating (IH) applications aided by electronic power control have gained s...
Induction heating (IH) technology is nowadays widely present in domestic appliances because of its c...
Thesis (M.A.)--Özyeğin University, Graduate School of Sciences and Engineering, Department of Electr...
The thesis presents a detailed design of 1.5kW induction cooker capable of heating all types of meta...
The principle of induction cooker is based on heating the metallic pan with circulating eddy current...
Thesis (MTech(Electrical engineering))--Cape Technikon, Cape Town, 2000The development of an automat...
This paper presents a review of different types of Induction cooker design which can be used for dom...
In the current scenario, power electronic device-based induction heating (IH) technologies are widel...
In the current scenario, power electronic device-based induction heating (IH) technologies are widel...
The main target of this thesis is to provide new, fast and accurate methodologies to model and analy...
Induction heating is the best method of providing fast, consistent heat for vast selection of manufa...
The induction heating process at a domestic level is getting attention nowadays as this power conver...
By using the phase plane approach, a single switch resonant inverter (SSRI) for home cooking applica...
An induction heating controller circuit based on resonant technique is presented. The controller is ...
In recent years, induction heating (IH) applications aided by electronic power control have gained s...
In recent years, induction heating (IH) applications aided by electronic power control have gained s...
Induction heating (IH) technology is nowadays widely present in domestic appliances because of its c...
Thesis (M.A.)--Özyeğin University, Graduate School of Sciences and Engineering, Department of Electr...
The thesis presents a detailed design of 1.5kW induction cooker capable of heating all types of meta...
The principle of induction cooker is based on heating the metallic pan with circulating eddy current...
Thesis (MTech(Electrical engineering))--Cape Technikon, Cape Town, 2000The development of an automat...
This paper presents a review of different types of Induction cooker design which can be used for dom...
In the current scenario, power electronic device-based induction heating (IH) technologies are widel...
In the current scenario, power electronic device-based induction heating (IH) technologies are widel...
The main target of this thesis is to provide new, fast and accurate methodologies to model and analy...
Induction heating is the best method of providing fast, consistent heat for vast selection of manufa...
The induction heating process at a domestic level is getting attention nowadays as this power conver...
By using the phase plane approach, a single switch resonant inverter (SSRI) for home cooking applica...
An induction heating controller circuit based on resonant technique is presented. The controller is ...
In recent years, induction heating (IH) applications aided by electronic power control have gained s...
In recent years, induction heating (IH) applications aided by electronic power control have gained s...
Induction heating (IH) technology is nowadays widely present in domestic appliances because of its c...
Thesis (M.A.)--Özyeğin University, Graduate School of Sciences and Engineering, Department of Electr...