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Near Time-Optimal Transient Response in DC-DC Buck Converters Taking into Account the Inductor Current Limit

机译:考虑到电感电流限制的DC-DC降压转换器中的近代最佳瞬态响应

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This paper analyzes the general problem of inductor current limitation in the time-optimal load transient response of a DC-DC buck converter. The concept of current-limited, time-optimal control (CL-TOC) is introduced and compared to the previously reported unconstrained time-optimal solutions. A fundamental tradeoff between maximum allowed current overshoot and voltage recovery time is recognized, and a set of design equations is developed which provide the engineer with the necessary analytical tools for the controller design. Furthermore, the minimum number of switching actions required to handle a generic current-limited TOC is determined, leading to the formulation of a minimum-switch CL-TOC concept. Two distinct approaches for minimum-switch digital CL-TOC are then introduced. The first method, which is an extension of a charge-balance approach, has the advantage of achieving the time-optimal switching sequence without the need for a prior knowledge of the output filter LC parameters. The second approach implements a near CL-TOC employing the switching surface concept and defining the current limitation in the state-space. Simulation and experimental results are provided to demonstrate the effectiveness of the approaches.
机译:本文分析了DC-DC降压转换器的最佳负载瞬态响应中电感电​​流限制的一般问题。引入了电流限制,最佳控制(CL-TOC)的概念,并与先前报告的未受约束时间最佳解决方案相比。识别出最大允许电流过冲和电压恢复时间之间的基本折衷,并且开发了一组设计方程,为工程师提供了控制器设计的必要分析工具。此外,确定处理通用电流限制的TOC所需的最小交换动作数,导致最小开关CL-TOC概念的配方。然后引入了最小开关数字CL-TOC的两个不同的方法。作为电荷平衡方法的扩展的第一方法具有实现时间最佳切换序列的优点,而无需先前了解输出滤波器LC参数。第二种方法实现了采用切换表面概念的近CL-TOC,并限定状态空间中的电流限制。提供了模拟和实验结果以证明该方法的有效性。

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