Efficiency Considerations of LLC Resonant Converter for Induction Heating Application

Ala Houam, Fares Zaamouche, Rabah Daouadi, Moussa Attia
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引用次数: 1

Abstract

Due to the high efficiency, high power density and low EMI provided by the LLc resonant converter, it has been widely used by researchers in many fields such as induction heating (IH). This converter is based on a resonant circuit consisting of a capacitor (Cr) and two inductors Lr, Lm operating in wide output load regulating ranges for the purpose of achieving good efficiency for very high power systems using a high operating frequency. This paper aims to present a half-bridge LLC resonant converter based on power supplies for IH applications. The analysis contains five components: half bridge inverter, resonant tank, high frequency transformer, rectifier and coil. The switching bridge generates a square waveform to excite the LLC resonant tank, which will produce a resonant sinusoidal current which is transferred to the secondary of the converter through a high-frequency transformer. as it scales the voltage up or down according to the output requirements. The load represented by the equivalent circuit of the coil and work-piece is fed by the current transformed by the rectifiers. This paper provides an improved knowledge of the control of the output power for high-temperature applications through numerical simulation Considering that the load parameters and resonant frequency vary substantially throughout the system operation. The results of testing demonstrated that the proposed scheme and assembly has good efficiency, and it is well suited for magnetic induction heating systems.
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感应加热用LLC谐振变换器的效率考虑
由于LLc谐振变换器具有高效率、高功率密度和低电磁干扰等特点,在感应加热(IH)等领域得到了广泛的应用。该变换器基于由电容器(Cr)和两个电感Lr, Lm组成的谐振电路,工作在宽输出负载调节范围内,目的是为使用高工作频率的高功率系统实现良好的效率。本文旨在提出一种基于电源的半桥LLC谐振变换器。该分析包括半桥式逆变器、谐振槽、高频变压器、整流器和线圈五个组成部分。开关桥产生方波激励LLC谐振槽,产生谐振正弦电流,通过高频变压器传递到变换器二次端。因为它可以根据输出要求放大或缩小电压。由线圈和工件的等效电路表示的负载由整流器转换的电流供给。考虑到负载参数和谐振频率在整个系统运行过程中变化很大,本文通过数值模拟提高了对高温应用输出功率控制的认识。测试结果表明,所提出的方案和装配具有良好的效率,非常适合于磁感应加热系统。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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