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Online Controller Tuning in Current Mode Adaptive Off-Time Digital Control: A Large-Signal Approach

机译:在线控制器调整电流模式自适应关闭时间数字控制:大信号方法

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Constant off-time control offers fast transient recovery and inherent current-loop stability for wide duty ratio operation; however, it suffers from poor step-down transient and requires constant time-adaptation for improved performance. In addition, the existing small-signal based tuning methods restricts the achievable closed-loop bandwidth especially in non-minimum phase converters. This paper introduces a geometric based non-linear tuning method for constant OFF-time digital modulation without the requirement of linearized small-signal model. The automated (constant) time adaptation method for improved performance is developed with minimum hardware resources, which achieves time-optimal transient recovery with single switching action. The mono-shot counter can be updated in real-time using a time-to-digital converter for a fixed-frequency operation, without the need of the input voltage sensing. The method of time-optimal tuning with automated time-adaptation is extended for constant ON/OFF-time hybrid modulation technique. A boost converter prototype is made and the proposed tuning with adaptive OFF-time is realized using a FPGA device and an improved performance are demonstrated using test results.
机译:恒定的关闭时间控制提供宽占空比操作的快速瞬态恢复和固有的电流回路稳定性;然而,它遭受了降压瞬态的差,并且需要恒定的时间适应以提高性能。此外,现有的小信号的调谐方法限制了可实现的闭环带宽,尤其是在非最小相位转换器中。本文介绍了一种基于几何非线性调谐方法,用于恒定的OFF-TIEE数字调制,无需线性化小信号模型。用于改进性能的自动(常数)时间适应方法是用最小硬件资源开发的,这实现了单个切换动作的时间最佳的瞬态恢复。可以使用时间到数字转换器实时更新单次拍摄计数器,用于固定频率操作,而无需输入电压感测。通过自动调谐的时间最佳调谐方法,用于恒定的开/关 - 时间混合调制技术。制造升压转换器原型,并使用FPGA器件实现具有自适应OFF-TIME的建议调谐,并使用测试结果对具有改进的性能进行了改进的性能。

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