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Dual zone industrial induction heater using MOSFET based high frequency hybrid resonant converter

机译:使用基于MOSFET的高频混合谐振转换器的双区工业感应加热器

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In this paper a converter is described where both series and parallel resonant circuits are used. To minimize the losses, switching instant is chosen at zero current crossover instant. The converter scheme described in this paper consists of four MOSFETs in H-bridge configuration. It is used for industrial induction heating purposes comprising of dual zone heating. The switching frequency lies in the range of 30 kHz to 100 kHz. Maximum efficiency is achieved for operating frequency of 66.66 kHz. Earlier voltage controlled devices like IGBTs, MCTs were tested and found that the system was working perfectly. For above mentioned frequency, IGBT was the better option considering conduction losses. But the cost of power MOSFETs is lower than the same power rating IGBTs and MCTs. So, by considering the overall cost of the dual zone industrial induction heater, slightly greater conduction losses of MOSFETs can be accepted. For the system efficiency optimization, different control strategies are discussed. The two zones have different pipe diameters and output power levels. This paper presents a new approach of dual zone operation depending on the demand of hot fluid flow in the industrial application. It is saving the energy cost when it is operating in under load condition. The circuit is simulated with PSPICE and simulation results are specified at the end.
机译:在本文中,描述了使用串联和并联谐振电路的转换器。为了使损耗最小,在零电流交叉点选择开关时刻。本文描述的转换器方案由H桥配置的四个MOSFET组成。它用于包括双区域加热在内的工业感应加热目的。开关频率在30 kHz至100 kHz的范围内。对于66.66 kHz的工作频率,可实现最高效率。测试了较早的电压控制设备,例如IGBT,MCT,发现该系统运行良好。对于上述频率,考虑到传导损耗,IGBT是更好的选择。但是,功率MOSFET的成本低于相同额定功率的IGBT和MCT。因此,通过考虑双区工业感应加热器的总体成本,可以接受MOSFET的导通损耗稍大一些。为了优化系统效率,讨论了不同的控制策略。这两个区域具有不同的管道直径和输出功率水平。本文提出了一种根据工业应用中对热流体流量的需求进行双区运行的新方法。在负载条件下运行时,可以节省能源成本。用PSPICE对电路进行仿真,最后指定仿真结果。

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