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Design Analysis of Full-Bridge Parallel Resonant Inverter for Induction Heating Application Using Pulse Density Modulation Technique

机译:使用脉冲密度调制技术的感应加热应用全桥平行谐振逆变器的设计分析

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In this work, full bridge parallel resonant inverter (FBPRI) using pulse density modulation (PDM) technique has been proposed for industrial induction heating application like brazing, welding, melting of iron etc. There are so many techniques that have been developed for FBPRI to control the output power in IH application. But none of them are able to maintain resonating and ZVS/ZCS condition under a different operating condition which is a key feature of resonant converters. Due to this, efficiency and performance of IH system are degraded. Keeping this disadvantage, a pulse density modulation (PDM) technique has been proposed in this work for FBPRI to achieve better efficiency and performance of the classical IH system. This proposed technique ensures the ZVS/ZCS condition which reduces the switching losses. The proposed control method/technique is described in detail and it is validated through PSIM simulation at a frequency of 47 KHz.
机译:在这项工作中,已经提出了使用脉冲密度调制(PDM)技术的全桥并联谐振逆变器(FBPRI),用于工业感应加热应用,如钎焊,焊接,铁等熔化等。有很多技术已经为FBPRI开发了控制IH应用中的输出电源。但是它们都不能在不同的操作条件下维持谐振和ZVS / ZCS条件,这是谐振转换器的关键特征。由此,IH系统的效率和性能降低。保持这个缺点,在这项工作中提出了一种脉冲密度调制(PDM)技术,用于FBPRI,以实现经典IH系统的更好效率和性能。该提出的技术确保了降低了切换损耗的ZVS / ZCS条件。详细描述了所提出的控制方法/技术,并通过PSIM模拟以47 kHz的频率进行验证。

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