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Low-power non-ideal pulse-width modulated DC–DC buck–boost converter: design, analysis and experimentation

机译:低功率非理想脉冲宽度调制DC-DC降压-升压转换器:设计,分析和实验

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摘要

In this study, parasitic elements (non-idealities) effect on a low-power DC-DC buck-boost converter design is analysed and investigation is carried out by both large (i.e. steady-state) and small signal analysis. The large signal analysis of non-ideal buck-boost converter explored the significant information such as nearly accurate duty cycle, maximum allowable duty cycle and maximum possible output voltage. Further, accurate mathematical design formulae are derived of inductor and capacitor for specified inductor current ripple and output voltage ripple (OVR), respectively. Moreover, consequences of different equivalent series resistance of capacitor on OVR is examined. Subsequently, the exact model of buck-boost converter is procured from the small signal analysis, which is almost analogous to practical system. In order to show the impact of non-idealities on controller design, an internal model control PID controller is designed for ideal, semi-non-ideal and complete non-ideal systems based on their respective models, which shows the controller based on non-ideal model provides very close results to practical system. Conclusively, the complete theoretical explorations are justified by simulations and substantiated by experimental results.
机译:在这项研究中,分析了寄生因素(非理想因素)对低功率DC-DC降压-升压转换器设计的影响,并通过大(即稳态)和小信号分析进行了研究。非理想降压-升压转换器的大信号分析探索了重要信息,例如接近准确的占空比,最大允许占空比和最大可能的输出电压。此外,分别针对指定的电感器电流纹波和输出电压纹波(OVR)推导了电感器和电容器的精确数学设计公式。此外,研究了电容器等效等效串联电阻对OVR的影响。随后,通过小信号分析获得了降压-升压转换器的精确模型,这几乎与实际系统相似。为了显示非理想状态对控制器设计的影响,内部模型控制PID控制器根据各自的模型针对理想,半非理想和完整的非理想系统进行了设计,该模型显示了基于非理想状态的控制器。理想模型提供了与实际系统非常接近的结果。结论是,完整的理论探索可以通过模拟得到证明,并可以通过实验结果得到证实。

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