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System modeling and design considerations for point-of-load digital power supplies

机译:负载点数字电源的系统建模和设计注意事项

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This paper focuses on effective system modeling and implementation of a dc-dc buck converter with a digital controller. Two methods are systematically followed to design a two pole, two zero proportional-integral-derivative (PID) controller. Method one uses a traditional design by emulation, where compensator poles and zeroes are chosen based on the uncompensated loop response to yield sufficient phase and gain margins for system stability. Method two uses a direct digital design method. Further, a design topology based on a supervisory loop concept using and Implicit Model Adaptive Controller to augment the digital PID counterpart is explained. This augmentation is necessary when there are parametric variations in the system. Finally, controller coefficients from both methods are implemented on a practical 66W buck converter hardware platform and the results are satisfactory.
机译:本文着重于有效的系统建模和带数字控制器的DC-DC降压转换器的实现。系统地遵循两种方法来设计一个两极,两个零比例积分微分(PID)控制器。方法一采用传统的仿真设计,其中,根据未补偿的环路响应选择补偿器的极点和零点,以产生足够的相位和增益裕度,以实现系统稳定性。方法二使用直接数字设计方法。此外,还说明了基于监督回路概念的设计拓扑,该拓扑使用隐式模型自适应控制器和数字PID对应物进行扩充。当系统中存在参数变化时,此扩充是必要的。最后,两种方法的控制器系数均在实际的66W降压转换器硬件平台上实现,结果令人满意。

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