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Power Control of Asymmetrical Frequency Modulation in a Full-Bridge Series Resonant Inverter

机译:全桥串联谐振逆变器中非对称频率调制的功率控制

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摘要

The traditional power control schemes for induction heating device mainly focus on the pulse frequency modulation (PFM) and the pulse density modulation. But they cannot solve the problems of power control, efficiency, and load-adaption well. This paper presents and analyzes the asymmetrical frequency modulation (AFM) control scheme used in the full-bridge series resonant inverter. With the proposed AFM control technique, the output power is controlled by two variables: the operation frequency and the division factor. Better efficiency performance can be achieved in the medium and low output power range when compared with PFM. The principles as well as the zero-voltage switching condition of the AFM are explained and the power losses of switches are analyzed. A control algorithm that schedules the three control modes of AFM is experimentally verified with a digital signal processor based induction heating prototype. The load-adaption, noise and thermal distribution problem of switches are also analyzed.
机译:传统的感应加热设备功率控制方案主要集中在脉冲频率调制(PFM)和脉冲密度调制上。但是它们不能很好地解决功率控制,效率和负载自适应的问题。本文介绍并分析了全桥串联谐振逆变器中使用的非对称频率调制(AFM)控制方案。利用提出的AFM控制技术,输出功率由两个变量控制:工作频率和分频系数。与PFM相比,在中低输出功率范围内可以获得更好的效率性能。阐述了AFM的原理以及零电压开关条件,并分析了开关的功率损耗。使用基于数字信号处理器的感应加热原型,通过实验验证了调度AFM的三种控制模式的控制算法。还分析了开关的负载自适应,噪声和热分布问题。

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