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On Electromagnetic Processes in HV Transformers of Switching-Mode Power Supplies at No-Load Conditions

机译:在无负载条件下的开关模式电源的HV变压器中的电磁过程

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When applying some kind of waveform to the primary of a transformer, one expects to see a more or less resembling waveform at the secondary. This is not the case for high-frequency HV transformers. The basic reason is that the parasitic parameters (PP) (leakage inductance and numerous parasitic capacitances) have a considerable influence on the transformer performance. HV transformer equivalent circuits are discussed, and the choice of one for further analysis is theoretically and experimentally justified. It is shown that HV rectifier/multiplier adds considerably to the parasitic capacitance of the secondary winding at no-load conditions. Further analysis concentrates on the electromagnetic processes in a transformer fed by a square-wave voltage, which is characteristic for no-load operation. Overvoltages (OV), i.e., ratio of the maximum voltage at the secondary to that calculated by the transformation ratio, generated by high harmonics are analyzed using Fourier transform. For special cases of asymmetrical waveshapes, closed-form expressions are obtained. The influence of the primary voltage risetime on the OV is also analyzed. It is shown that the characteristic OV is close to three for steep risetimes. Main conclusions were upheld by PSpice simulations and experimental investigation
机译:在将某种波形应用于变压器的主应用时,人们希望在次级中看到或多或少类似于波形。这不是高频HV变压器的情况。基本原因是寄生参数(PP)(漏电电感和众多寄生电容)对变压器性能具有相当大的影响。讨论了HV变压器等效电路,并且在理论上和实验证明中选择一个进一步分析的选择。结果表明,HV整流器/乘法器在无负载条件下显着增加次级绕组的寄生电容。进一步的分析在通过方波电压进料的变压器中的电磁过程中的集中在载体中,这是无负载操作的特性。使用傅里叶变换分析过电压(即,通过高谐波计算的乘以转换比率的最大电压的比率。对于不对称波纹的特殊情况,获得闭合表达。还分析了初级电压立粒时间对OV的影响。结果表明,特性OV接近三个用于陡峭的速度。 PSPICE模拟和实验调查得到了正常结论

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