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Multiscale Modeling and Analysis of Boost Converter Based on Device Mechanism Model and Continuous Switching Function

机译:基于装置机制模型的升压转换器的多尺度建模与分析及连续切换功能

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摘要

There are multiscale coupling relationships during the operation of dc/dc converters, where the macroscale is the overall working principle of the circuit and the microscale is the device mechanism model of the circuit components. Modeling only at the macroscale cannot reflect the effect of the device's internal effects on the circuit, while modeling the device at the microscale cannot show the operating characteristics of the circuit. To obtain the analytical solutions of the state variables for dc/dc converters at circuit- and device-level scales, a method for establishing a multiscale model of a dc/dc converter is proposed. Firstly, the device mechanism at the microscale is appropriately combined with the circuit model at the macroscale. Secondly, the traditional piecewise switching function that represents the switching state is replaced by a continuous switching fitting function. Thereby, a continuous multiscale unified model of the dc/dc converter is reached. Afterward, by adopting the improved equivalent small parameter (ESP) method proposed in this article, the steady-state analytical solutions of the model in the open- and closed-loop states can be obtained, respectively. Finally, the steady-state analytical solutions are compared with the results of simulation and experiment.
机译:在DC / DC转换器的操作期间存在多尺度耦合关系,其中Macroscale是电路的整体工作原理,微观尺寸是电路元件的设备机制模型。仅在Macroscale的建模不能反映设备对电路的内部效果的影响,同时在Microscale上建模设备无法显示电路的操作特性。为了在电路和设备级别的尺度处获得DC / DC转换器的状态变量的分析解,提出了一种用于建立DC / DC转换器的多尺度模型的方法。首先,微尺度的设备机构与Macroscale的电路模型适当地组合。其次,表示表示切换状态的传统分段切换功能由连续的切换拟合功能代替。由此,达到了DC / DC转换器的连续多尺寸统一模型。之后,通过采用本文提出的改进的等效小参数(ESP)方法,可以分别获得开放和闭环状态中模型的稳态分析解。最后,将稳态分析解决方案与模拟和实验结果进行比较。

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