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Theoretical design of compact multi-phase interleaved buck DC-DC converter for automotive power applications

机译:用于汽车电源的紧凑型多相交错式降压DC-DC转换器的理论设计

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Theoretical design of a multiphase interleaved buck DC-DC converter is introduced based on corresponding requirements from automotive industry. Particularly, multiphase interleaved topology is adopted to prevent much heat generated in devices and large voltage ripple in the load. Ceramic capacitors will be used to replace electrolytic capacitors in order to meet the requirement of long life-time. Control strategy in the converter is mainly based on formulas derived for calculating duty cycle of PWM signals in both continuous mode and discontinuous mode. PID control is also included to correct the error generated from the difference in duty cycle between the ideal condition and the actual one as well as to realize fast recovery of nominal output during variation of working condition, such as variation of input voltage and variation of load. All control functions will be realized by means of a single microcontroller. The theoretical design has been tested through simulation in Simulink model, in which particular sampling frequency and control frequency of the actual microcontroller were taken into account.
机译:根据汽车行业的相应要求,介绍了一种多相交错式降压DC-DC转换器的理论设计。特别是,采用多相交错拓扑结构可防止设备中产生大量热量以及负载中的大电压纹波。为了满足长寿命的要求,将使用陶瓷电容器代替电解电容器。转换器中的控制策略主要基于推导公式,用于计算连续模式和不连续模式下的PWM信号的占空比。还包括PID控制,以纠正理想状态和实际状态之间的占空比差异所产生的误差,并在工作条件变化(例如输入电压变化和负载变化)期间实现标称输出的快速恢复。所有控制功能将通过单个微控制器实现。通过在Simulink模型中进行仿真,对理论设计进行了测试,其中考虑了实际微控制器的特定采样频率和控制频率。

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