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A Novel Ultrafast Transient Constant on-Time Buck Converter for Multiphase Operation

机译:用于多相操作的新型超快瞬态恒定

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摘要

Constant ON-time control (COT) has been widely adopted in buck converters because of its simplicity, fast transient response, and high light-load efficiency. However, the increasing power demands of CPUs and AI/ML engines is pushing voltage regulators to support higher output currents, which typically requires the use of multiphase operation. However, since most high-performance COT schemes utilize ripple as a control variable, the ripple cancellation point in multiphase designs imposes difficult stability concerns, limiting performance, and robustness. In this article, a novel ultrafast transient COT (UFTCOT) control scheme is proposed to enable fast and robust operation even in multiphase converters. The small-signal models of the proposed control scheme are derived based on a describing function technique, whose theoretical results are compared, along with simulation and measurement results, to contrast the proposed UFTCOT technique to exiting approaches.
机译:由于其简单性,快速的瞬态响应和高光负荷效率,因此在降压转换器中被广泛采用了恒定的随时控制(COT)。 然而,CPU和AI / ML发动机的功率需求的增加是推动电压调节器以支持更高的输出电流,这通常需要使用多相操作。 然而,由于大多数高性能的COT方案利用纹波作为控制变量,多相设计中的纹波取消点施加了困难的稳定性问题,限制了性能和鲁棒性。 在本文中,提出了一种新颖的超快瞬态COT(UFTCOT)控制方案,即使在多相转换器中也能够快速且鲁棒操作。 基于描述功能技术导出所提出的控制方案的小信号模型,其理论结果与模拟和测量结果相比,将所提出的UFTCot技术与退出方法进行造影。

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