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Modeling and Characteristics Analysis for a Buck-Boost Converter in Pseudo-Continuous Conduction Mode Based on Fractional Calculus

机译:基于分数阶微积分的伪连续导电模式降压-升压转换器建模与特性分析

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摘要

In recent days, fractional calculus (FC) has been accepted as a novel modeling tool that can extend the descriptive power of the traditional calculus. Fractional-order descriptiveness can increase the flexibility and degrees of freedom of the model by means of fractional parameters. Based on the fact that real capacitors and inductors are "intrinsic" fractional order, fractional calculus is introduced into the modeling process to establish a fractional-order state-space averaging model of the Buck-Boost converter in pseudo-continuous conduction mode (PCCM). Orders of the model are considered as extra parameters, and these parameters have significant influences on the performance of the model. The inductor current, the inductor current ripple, the amplitude of the output voltage, and the transfer functions of the fractional-order model are all related to orders. The contrast simulation experiments are conducted to investigate the performance of integer-order and fractional-order Buck-Boost converters in PCCM. Results of numerical and circuit simulations demonstrate that the proposed theoretical analysis is effective; the fractional-order model of the Buck-Boost converter in PCCM has certain theoretical and practical significance for modeling and performance analysis of other electrical or electronic equipment.
机译:近年来,分数微积分(FC)已被接受为一种新颖的建模工具,可以扩展传统微积分的描述能力。分数阶描述性可以通过分数参数提高模型的灵活性和自由度。基于实际的电容器和电感器是“本征”分数阶的事实,分数阶微积分被引入到建模过程中,以建立伪连续传导模式(PCCM)的Buck-Boost转换器的分数阶状态空间平均模型。模型的阶次被认为是额外的参数,这些参数对模型的性能有重大影响。电感器电流,电感器电流纹波,输出电压的幅度以及分数阶模型的传递函数都与阶次相关。进行了对比仿真实验,以研究PCCM中整数阶和分数阶Buck-Boost转换器的性能。数值和电路仿真结果表明,所提出的理论分析是有效的。 PCCM中Buck-Boost转换器的分数阶模型对于其他电气或电子设备的建模和性能分析具有一定的理论和实践意义。

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  • 来源
    《Mathematical Problems in Engineering》 |2016年第1期|6835910.1-6835910.11|共11页
  • 作者单位

    State Key Laboratory Base of Eco-Hydraulic Engineering in Arid Area Xi'an University of Technology Xi'an 710048 China Institute of Water Resources and Hydro-Electric Engineering Xi'an University of Technology Xi'an 710048 China;

    College of Electronics and Information Xi'an Polytechnic University Xi'an 710048 China;

    School of Electrical Engineering Xi'an Jiaotong University Xi'an 710049 China;

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