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A systematic graphing technique for small-signal low-frequency characterization of PWM DC/DC converters

机译:PWM DC / DC转换器小信号低频表征的系统制图技术

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摘要

This paper presents a systematic graphing technique for the small-signal low-frequency characterization of pulsewidth-modulated (PWM) DC/DC power converters. The methodology starts with using a discrete-time state-space description to formulate a small-signal sensitivity graph for each circuit topology. Each graph correlates state-variable sensitivities with the topology duration, input source and state vector at the beginning of the topology. The overall converter sensitivities in one switching cycle are obtained by cascading the respective graphs in accordance with the sequence of the topologies. As the proposed method integrates with original algorithms for obtaining the time-domain responses and the steady-state operating point of converters, it is unnecessary to have a priori understanding of the converter operation and is possible to obtain actual circuit waveforms within one switching cycle. The proposed method is exemplified by analyzing a PWM boost converter operating in continuous conduction mode and discontinuous conduction mode under open-loop and closed-loop control, respectively. Theoretical predictions are verified with experimental measurements.
机译:本文提出了一种用于脉宽调制(PWM)DC / DC电源转换器的小信号低频表征的系统制图技术。该方法开始于使用离散时间状态空间描述来为每个电路拓扑制定小信号灵敏度图。每个图都将状态变量的敏感性与拓扑持续时间,输入源和拓扑开始处的状态向量相关联。通过根据拓扑顺序将各个图级联,可以获得一个开关周期内的总转换器灵敏度。由于所提出的方法与用于获得转换器的时域响应和稳态工作点的原始算法集成在一起,因此无需对转换器的操作有先验的了解,并且有可能在一个开关周期内获得实际的电路波形。通过分析分别在开环和闭环控制下以连续导通模式和不连续导通模式运行的PWM升压转换器来举例说明该方法。理论预测已通过实验测量得到验证。

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