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High-performance front-end converter for avionics applications

机译:航空电子应用的高性能前端转换器

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The distributed power systems of future commercial aircraft will adopt variable frequency generation (360 to 800 Hz). Front-end converters in the system will be required to have a high efficiency and a low total harmonic distortion (THD) of the input current. This paper explains the design of a zero-voltage-switching (ZVS) active-clamped isolated low-harmonic SEPIC rectifier for such applications. Utilization of the transformer leakage inductance for ZVS and a single-layer transformer design contribute to a high efficiency. An accurate averaged switch model has been developed, which shows that the control-to-input-current transfer function of this converter does not exhibit resonances observed in the conventional SEPIC. As a result, for closed-loop operation using average current control, damping of the coupling capacitor is not required. Operating at a switching frequency of 200 kHz, an experimental 100 W, 28 V output rectifier achieves a THD of 3-4% and efficiency exceeding 90% over the entire line frequency range.
机译:未来商用飞机的分布式电源系统将采用可变频率发电(360至800 Hz)。系统中的前端转换器将需要具有高效率和低输入电流的总谐波失真(THD)。本文介绍了针对此类应用的零电压开关(ZVS)有源钳位隔离式低谐波SEPIC整流器的设计。 ZVS的变压器漏感和单层变压器设计的使用有助于提高效率。已开发出精确的平均开关模型,该模型表明该转换器的控制-输入-电流传递函数不会表现出常规SEPIC中观察到的谐振。结果,对于使用平均电流控制的闭环操作,不需要耦合电容器的阻尼。实验性100 W,28 V输出整流器以200 kHz的开关频率工作,在整个线路频率范围内,总谐波失真(THD)为3-4%,效率超过90%。

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