具有先进数字负载的极端动态响应的串并联方法和夹紧方法

P. Krein, J. Kimball
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引用次数: 9

摘要

串联输入并联输出dc-dc变换器组合在变换器之间提供了固有的共享。然而,对于传统的控制,这种共享是不稳定的。最近的文献工作提出了复杂的反馈回路来纠正这个问题,以牺牲动态性能为代价。本文介绍了一种简单的无传感器电流模式控制,具有稳定的共享和快速的动态特性,适用于高级数字负载。有了这种控制,一个“超级匹配”的电流共享控制就出现了。共享通过暂态发生,仅受转换器的能量限制。该控制方法在高性能稳压模块中具有相当大的应用前景。为了更快的响应,提出了夹紧技术。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Series-parallel approaches and clamp methods for extreme dynamic response with advanced digital loads
The series-input parallel-output dc-dc converter combination provides inherent sharing among the converters. With conventional controls, however, this sharing is unstable. Recent literature work proposes complicated feedback loops to correct the problem, at the cost of dynamic performance. This paper shows that a simple sensorless current mode control stabilizes sharing with fast dynamics suitable for advanced digital loads. With this control in place, a "super-matched" current sharing control emerges. Sharing occurs through transients, limited only by the energy limits of the converters. The control approach has considerable promise for high-performance voltage regulator modules. For even faster response, clamping techniques are proposed.
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