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Modelling and control of a multi-stage interleaved DC-DC converter with coupled inductors for super-capacitor energy storage system

机译:具有超级电容器储能系统耦合电感的多级交错式DC-DC转换器的建模和控制

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摘要

Interleaved converters with coupled inductors are widely used to share load current in high power applications. It offers high equivalent switching frequency and reduced output current ripples using small size magnetic components. Due to smaller common-mode inductance, control system can be designed to achieve fast dynamic response. This paper proposes 8 channel interleaved DC/DC converter for interfacing super-capacitor energy storage system to a 400V DC voltage bus. Multi-stage interleaving magnetic circuit with two-phase coupling inductor as a building block is proposed. A methodology is developed to construct the model of the multi-stage magnetic circuit from the basic two-phase coupled inductor model. The derived model is successfully used to evaluate the system power losses and to design the magnetic circuit parameters and its current controller to fulfil the DC/DC converter steady state and dynamic performance specifications. A 20kW/four stage/8 channel DC/DC converter laboratory prototype has been built to connect a super-capacitor stack to 400V DC voltage bus. Experimental investigation validates the modeling, the system losses calculations and the design specifications of the system.
机译:具有耦合电感器的交错式转换器被广泛用于在高功率应用中共享负载电流。使用小尺寸的磁性元件,它可提供较高的等效开关频率并减少输出电流纹波。由于共模电感较小,因此可以将控制系统设计为实现快速动态响应。本文提出了一种8通道交错式DC / DC转换器,用于将超级电容器储能系统连接到400V DC电压总线。提出了以两相耦合电感为基础的多级交织磁路。开发了一种从基本的两相耦合电感器模型构建多级磁路模型的方法。该推导模型已成功用于评估系统功耗,设计磁路参数及其电流控制器,以满足DC / DC转换器的稳态和动态性能指标。已构建了20kW /四级/ 8通道DC / DC转换器实验室原型,以将超级电容器堆栈连接到400V DC电压总线。实验研究验证了建模,系统损耗计算和系统的设计规格。

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