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Modeling of power control schemes in induction cooking devices

机译:电磁炉中功率控制方案的建模

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In recent years, with remarkable advancements of power semiconductor devices and electronic control systems, it becomes possible to apply the induction heating technique for domestic use. In order to achieve the supply power required by these devices, high-frequency resonant inverters are used: the force commutated, half-bridge series resonant converter is well suited for induction cooking since it offers an appropriate balance between complexity and performances. Power control is a key issue to attain efficient and reliable products. This paper describes and compares four power control schemes applied to the half-bridge series resonant inverter. The pulse frequency modulation is the most common control scheme: according to this strategy, the output power is regulated by varying the switching frequency of the inverter circuit. Other considered methods, originally developed for induction heating industrial applications, are: pulse amplitude modulation, asymmetrical duty cycle and pulse density modulation which are respectively based on variation of the amplitude of the input supply voltage, on variation of the duty cycle of the switching signals and on variation of the number of switching pulses. Each description is provided with a detailed mathematical analysis; an analytical model, built to simulate the circuit topology, is implemented in the Matlab environment in order to obtain the steady-state values and waveforms of currents and voltages. For purposes of this study, switches and all reactive components are modelled as ideal and the "heating-coil/pan" system is represented by an equivalent circuit made up of a series connected resistance and inductance.
机译:近年来,随着功率半导体器件和电子控制系统的显着进步,将感应加热技术应用于家庭成为可能。为了获得这些设备所需的电源,使用了高频谐振逆变器:力换向半桥串联谐振变换器非常适合感应烹饪,因为它在复杂性和性能之间提供了适当的平衡。功率控制是获得高效可靠产品的关键问题。本文描述并比较了应用于半桥串联谐振逆变器的四种功率控制方案。脉冲频率调制是最常见的控制方案:根据此策略,通过改变逆变器电路的开关频率来调节输出功率。最初为感应加热工业应用开发的其他考虑的方法有:脉冲幅度调制,非对称占空比和脉冲密度调制,它们分别基于输入电源电压幅度的变化和开关信号占空比的变化以及开关脉冲数的变化。每个描述都提供了详细的数学分析。为了获得电流和电压的稳态值和波形,在Matlab环境中实现了一个用于模拟电路拓扑的分析模型。为了便于研究,开关和所有电抗组件均建模为理想模型,“加热线圈/锅”系统由串联的电阻和电感组成的等效电路表示。

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