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Design of Fast Transient Response Voltage-Mode Buck Converter With Hybrid Feedforward and Feedback Technique

机译:混合馈电和反馈技术的快速瞬态响应电压 - 模块降压转换器设计

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For a voltage-mode buck converter, to improve the transient response and reduce the size of the proportional-integral-differential (PID) compensation network, a hybrid feedforward and feedback technique (HFFT) is presented in this article. First, the HFFT utilizes the input voltage feedforward, the output voltage feedback, and the duty-ratio feedback to achieve fast line and load transient responses simultaneously. Second, the converter system is comprised of two feedback loops. One outer loop employs a voltage feedback control and provides a phase lead (PD) element. The other inner loop uses a duty-ratio feedback control and produces a phase lag (PI) element. Then adopting the PD and PI elements, a proposed implementation of PID compensation with small on-chip components can also be obtained. A buck converter chip with the HFFT has been fabricated in 0.18- $mu ext{m}$ 1.8/5-V CMOS technology. Measurement results show that the output voltage of the buck converter is almost invariant under a line voltage step of 1.5 V and settled within $4.5~mu ext{s}$ for a load current step of 500 mA.
机译:对于电压模式降压转换器,为了提高瞬态响应并降低比例积分(PID)补偿网络的尺寸,本文提出了混合馈通和反馈技术(HFFT)。首先,HFFT利用输入电压前馈,输出电压反馈和占空比反馈,以实现快速线并同时加载瞬态响应。其次,转换器系统由两个反馈回路组成。一个外部循环采用电压反馈控制并提供相位引线(PD)元件。另一内环使用占空比反馈控制并产生相位滞后(PI)元件。然后采用PD和PI元素,也可以获得具有小型片上组件的PID补偿的建议实现。带有HFFT的降压转换器芯片已在0.18- <内联XMLNS:MML =“http://www.w3.org/1998/math/mathml”xmlns:xlink =“http://www.w3中.org / 1999 / xlink“> $ mu text {m} $ 1.8 / 5-v CMOS技术。测量结果表明,降压转换器的输出电压在1.5 V的线电压步骤下几乎不变,并在<内联 - 公式XMLNS中结算:MML =“http://www.w3.org/1998/math/mathml” XMLNS:XLink =“http://www.w3.org/1999/xlink”> $ 4.5〜 mu text {s} $ 用于500 mA的负载电流步骤。

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