Hybrid Current Mode Control for Phase-Shift Full-Bridge Converter

Jaehong Ko, Seung-Woo Baek, Hag-Won Kim, Kwan-Yuhl Cho
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引用次数: 1

Abstract

A phase-shift full-bridge (PSFB) converter is used for various power devices because of its simple control and low switching loss. However, if the balance of the primary side current is not maintained, the magnetizing inductance of the transformer is saturated and can be damaged. Therefore, it is crucial to balance the primary side current through the peak current mode control. During the peak current control mode, subharmonic oscillation occurs when the duty is 0.5 or more. Therefore, it is suppressed by slope compensation. The slope depends on the output voltage. Because it is difficult to change the slope in real time depending on the output voltage, the maximum slope value is selected to suppress the subharmonic oscillation for all values of duty ratio. Nevertheless, when the maximum slope value is used, the response speed is delayed because of overcompensation. To solve these problems, hybrid current mode control that combines both peak and valley current mode control has been proposed. This study proposes a hybrid current mode control method for PSFB converters, while considering the magnetizing current and ineffective duty. When this method is used, subharmonic oscillation does not occur for all duty ratio values and input/output voltage fluctuations.
相移全桥变换器的混合电流模式控制
相移全桥变换器(PSFB)以其控制简单、开关损耗小等优点被广泛应用于各种功率器件中。但是,如果不能保持一次侧电流的平衡,变压器的磁化电感就会饱和,可能会损坏。因此,通过峰值电流模式控制来平衡一次侧电流是至关重要的。在峰值电流控制模式下,当占空率大于等于0.5时,会发生次谐波振荡。因此,它被斜率补偿抑制。斜率取决于输出电压。由于很难根据输出电压实时改变斜率,因此选择最大斜率值来抑制所有占空比值的次谐波振荡。然而,当使用最大斜率值时,由于过度补偿,响应速度会延迟。为了解决这些问题,提出了将峰谷电流控制相结合的混合电流控制。本文提出了一种综合考虑磁化电流和无效负载的PSFB变换器混合电流模式控制方法。当使用这种方法时,所有占空比值和输入/输出电压波动都不会发生次谐波振荡。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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