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Design of voltage-mode hysteretic controllers for synchronous buck converters supplying microprocessor loads

机译:用于为微处理器负载供电的同步降压转换器的电压模式迟滞控制器的设计

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摘要

The use of voltage-mode hysteretic control is a popular way to power modern microprocessor loads having high slew-rate current transients. A simple methodology is presented for the control design of synchronous buck hysteretic regulators based on sliding-mode control theory. The major advantage of this design approach is that the large-signal dynamic model of the hysteretic regulator can be expressed in close-loop operation as a linear system, thanks to which regular linear control techniques can be easily employed to check stability and to impose a satisfactory transient as well as steady-state performance. A detailed design example and experimental results are reported, confirming the validity of the proposed control design methodology.
机译:电压模式迟滞控制的使用是为具有高摆率电流瞬变的现代微处理器负载供电的一种流行方法。提出了一种基于滑模控制理论的同步降压型磁滞调节器控制设计的简单方法。这种设计方法的主要优点是,磁滞调节器的大信号动态模型可以在闭环操作中表示为线性系统,因此,可以轻松地使用常规的线性控制技术来检查稳定性并强加一个令人满意的瞬态以及稳态性能。报告了详细的设计实例和实验结果,证实了所提出的控制设计方法的有效性。

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