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Apparatus for improving stability and dynamic response of half-bridge converter

机译:用于改善半桥转换器的稳定性和动态响应的设备

摘要

Typically, in a half-bridge converter A DC blocking capacitor and inductance on the primary side combines with the inductor and capacitor on the secondary side to produce complicated converter dynamic characteristics that make converter stabilization difficult. The disclosed system and methods enable converter stabilization by modulating, as a function of the voltage across the DC blocking capacitor, the feedback output error signal or the ramp signal for the PWM controller of the converter. The modulation removes the effect of the resonant circuit formed by the primary inductance and the DC blocking capacitor in the output voltage regulation loop. Further adjustment of the duty cycle of the power switches enables keeping the output voltage undisturbed by voltage variation across the DC blocking capacitor. Since, this inner compensation loop results in the voltage regulation feedback loop respond to only the output inductor-capacitor filter, the transfer function of this loop displays second order characteristics from the fourth order. Hence, stability issues are simplified to conventional second order compensation network whereby the converter can be optimized for fast transient response.
机译:通常,在半桥转换器中,初级侧的隔直电容和电感与次级侧的电感和电容结合在一起,会产生复杂的转换器动态特性,从而使转换器难以稳定。所公开的系统和方法通过根据DC隔直电容器两端的电压对用于转换器的PWM控制器的反馈输出误差信号或斜坡信号进行调制来实现转换器的稳定化。调制消除了由输出电压调节回路中的初级电感和隔直电容器形成的谐振电路的影响。进一步调节电源开关的占空比可以使输出电压不受DC隔直电容器两端电压变化的影响。由于此内部补偿环路导致电压调节反馈环路仅响应输出电感电容滤波器,因此该环路的传递函数显示出四阶的二阶特性。因此,将稳定性问题简化为常规的二阶补偿网络,从而可以针对快速瞬态响应优化转换器。

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