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Design of an LCC Resonant Converter for Furnace Power Supply during Electron Bean Melting

机译:电子豆熔化时用于炉电源的LCC谐振转换器的设计

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High-power converter applications are usually realized using the hard-switching technology under a low-switching frequency condition; moreover, the isolation transformer size must be larger. To reduce transformer size, the switching frequency must be increased; however, this increase directly results in the increase of switching loss. This paper proposes a high-voltage(HV) and high-power supply by using a thyristors-controlled rectifier and LCC series parallel resonant converter (LCC-SPRC). The introduced dc-dc converters are connected in parallel at the input side and in series at the output side, and soft-switching technology is applied to reduce the switching loss by using the frequency control mode. In addition, an equivalent mathematical model of LCC-SPRC with discontinuous current mode1 (DCM1) was analyzed in detail. For obtaining accurate parameters of LCC-SPRC, the Matlab/Simulink software was employed to calculate the system parameters, and provide the system with dynamic simulating curves. The simulation and experimental results verify that the LCC-SPRC design scheme of for supplying furnace power during the electron beam melting (EBM) is feasible in applications.
机译:大功率转换器的应用通常是在低开关频率条件下使用硬开关技术实现的。此外,隔离变压器的尺寸必须更大。为了减小变压器尺寸,必须增加开关频率。但是,这种增加直接导致开关损耗的增加。本文提出了一种使用晶闸管控制的整流器和LCC串联谐振转换器(LCC-SPRC)的高压(HV)和高功率电源。引入的dc-dc转换器在输入侧并联连接,在输出侧串联连接,并且应用了软开关技术以通过使用频率控制模式来降低开关损耗。此外,详细分析了具有不连续电流模式1(DCM1)的LCC-SPRC的等效数学模型。为了获得准确的LCC-SPRC参数,采用Matlab / Simulink软件计算系统参数,并为系统提供动态仿真曲线。仿真和实验结果验证了在电子束熔化(EBM)过程中为炉膛供电的LCC-SPRC设计方案是可行的。

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