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EMI Noise Source Reduction of Single-Ended Isolated Converters Using Secondary Resonance Technique

机译:使用二次共振技术,EMI噪声源减少单端隔离转换器

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摘要

Aiming at the problems of large dv/dt and di/dt in traditional single-ended converters and high electromagnetic interference (EMI) noise levels, a single-ended isolated converter using the secondary resonance technique is proposed in this paper. In the proposed converter, the voltage stress of the main power switch can be reduced and the voltage across the output diode is clamped to the output voltage when compared to the conventional flyback converter. In addition, the peak current stress through the main power switch can be decreased and zero current switching (ZCS) of the output diode can be achieved through the resonance technique. Moreover, the EMI noise coupling path and an equivalent model of the proposed converter topology are presented through the operational principle of the proposed converter. Analysis results indicate that the common mode (CM) EMI noise and the differential mode (DM) EMI noise of such a converter are deduced since the frequency spectra of the equivalent controlled voltage sources and controlled current source are decreased when compared with the traditional flyback converter. Furthermore, appropriate parameter selection of the resonant circuit network can increase the equivalent impedance in the EMI coupling path in the low frequency range, which further reduces the common mode interference. Finally, a simulation model and a 60W experimental prototype of the proposed converter are built and tested. Experimental results verify the theoretical analysis.
机译:针对传统的单端转换器和高电磁干扰(EMI)噪声水平的大DV / DT和DI / DT的问题,本文提出了一种使用二次谐振技术的单端隔离转换器。在所提出的转换器中,可以减小主电源开关的电压应力并且与传统的反激转换器相比,输出二极管两端的电压被钳位到输出电压。另外,通过主电源开关的峰值电流应力可以减小,并且可以通过谐振技术实现输出二极管的零电流切换(ZCS)。此外,通过所提出的转换器的操作原理提出了所提出的转换器拓扑的EMI噪声耦合路径和等效模型。分析结果表明,与传统的反激式转换器相比,由于等效受控电压源和受控电流源的频率谱减小,所以推导出这种转换器的共模(CM)EMI噪声和差分模式(DM)EMI噪声。 。此外,谐振电路网络的适当参数选择可以增加低频范围内的EMI耦合路径中的等效阻抗,这进一步降低了共模的干扰。最后,建立并测试了仿真模型和60W实验原型的建议转换器。实验结果验证了理论分析。

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