基于 SEPIC 拓扑的 DC/DC 转换器数学模型

A. I. Lavrenov, V. K. Bityukov
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摘要

目的。基于 SEPIC 拓扑结构的 DC/DC 转换器是一种单极性电子设备,可将输入正电压转换为相同极性的稳定输出电压。它还能调节低于和高于输入电压的极性。本文的目的是分析 DC/DC 转换器的两个工作阶段,并利用基尔霍夫规则为每个阶段绘制等效电路和获得特征微分方程。每个微分方程系都简化为考奇方程,以便进一步转化为极限连续数学模型。每个方程组都转换成矩阵形式,然后合并成一个矩阵系统。极限连续数学模型的构建采用基尔霍夫规则。计算机模拟使用了 Multisim 软件,因此可以将直流和电压的计算结果与模拟结果进行比较。结果表明,在开关频率高于 200 kHz 时,数学模型的相位坐标趋向于变流器的实际电流和电压值。电流和电压的计算值与模拟值(在填充因子和开关频率变化的情况下)之间的一致性相当好。基于 SEPIC 拓扑结构的 DC/DC 转换器的极限连续数学模型可以估算流经电感器绕组的电流和电容器上的电压与一系列参数的关系。基于 SEPIC 拓扑的 DC/DC 转换器的极限连续数学模型是其电路设计和物理数学分析的基础。
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Mathematical model of a DC/DC converter based on SEPIC topology
Objectives. A DC/DC converter based on SEPIC topology is a unipolar electronic device which converts an input positive voltage into a stabilized output voltage of the same polarity. It also has the ability to regulate polarity both below and above the input voltage. The aim of the paper is to analyze the DC/DC converter in its both operation phases, as well as to draw up equivalent circuits and obtain characterizing differential equations using Kirchhoff’s rules for each phase. Each system of differential equations is reduced to Cauchy equations, in order to be further transformed into a limiting continuous mathematical model. Each system of equations is converted into a matrix form and subsequently combined into a single matrix system.Methods. The construction of a limiting continuous mathematical model was accomplished using Kirchhoff’s rules. Multisim software was used for the computer simulation, thus enabling the calculated results of direct currents and voltages to be compared to those of the simulation.Results. Results show that the phase coordinates of the mathematical model tend towards the values of real currents and voltages of the converter at a switching frequency higher than 200 kHz. Fairly good agreement is established between the calculated values of currents and voltages and the values obtained by simulation (with varying fill factor and switching frequency).Conclusions. The resulting limiting continuous mathematical model of the DC/DC converter based on SEPIC topology allows for an estimation of the dependence of the currents flowing through the inductor windings and the voltages across the capacitors on a number of parameters. The limiting continuous mathematical model of the DC/DC converter based on SEPIC topology is the basis for its circuit design and physical-and-mathematical analysis.
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