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A fast-response sliding-mode controller for quadratic buck converter

机译:用于二次降压转换器的快速响应滑模控制器

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摘要

The switched-mode power supplies are widely used in very low voltage and high-power applications where large conversion ratios are required. In such cases, the quadratic buck converter is the suitable one compared to buck, cascaded buck and multi-phase choppers, because of their limitations in switching frequency and losses. This paper presents mathematical analysis, design and simulation of a quadratic buck converter using fixed frequency Pulse-Width Modulation (PWM)-based Sliding-Mode (SM) controller in order to obtain fast dynamic performance. The design aspects include choice of sliding surface, deriving existing and stability conditions, control parameter selection and their analysis. The performance of the proposed converter is compared with the conventional Average Current-Mode (ACM) controller. In average current mode, the tuning of the PI controller for the inner current loop and outer voltage loop is done using bode plots. The simulation results for the two types of controllers are represented for analysing dynamic performance, as well as line and load regulations.
机译:开关电源被广泛用于需要大转换比的超低压和高功率应用中。在这种情况下,与降压,级联降压和多相斩波器相比,二次降压转换器是合适的转换器,因为它们限制了开关频率和损耗。本文介绍了使用基于固定频率脉冲宽度调制(PWM)的滑模(SM)控制器的二次降压转换器的数学分析,设计和仿真,以获得快速的动态性能。设计方面包括滑动面的选择,推导现有的和稳定的条件,控制参数的选择及其分析。拟议的转换器的性能与常规的平均电流模式(ACM)控制器进行了比较。在平均电流模式下,使用波特图对内部电流回路和外部电压回路的PI控制器进行调整。表示了两种类型控制器的仿真结果,以分析动态性能以及线路和负载规则。

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