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A novel ripple-based constant on-time control with virtual inductance and offset cancellation for DC power converters

机译:一种新颖的基于波纹的恒定导通时间控制,具有虚拟电感和失调消除功能,适用于直流电源转换器

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In recent years, there has been a growing trend of mandating high power conversion efficiency, for both the heavy-load and the light-load conditions. To achieve this purpose, a ripple-based constant on-time (RBCOT) control for DC-DC converters has received wide attentions because of its natural characteristic of switching frequency reduction under light-load condition. However, a RBCOT converter suffers from output-voltage offset problem and sub-harmonic instability problem. In this paper, a modified RBCOT buck converter circuit will be proposed to solve both problems using the concept of virtual inductor current to stabilize the feedback and an offset cancellation circuit to cancel out the output DC offset. A control model based on describing function is also developed for the modified converter. From the model, it's found out that it's much easier to accomplish adaptive-voltage-positioning (AVP) using the proposed modified RBCOT scheme compared to a conventional constant-frequency controller. Simulation and experimental results are also given to verify the proposed scheme.
机译:近年来,对于重载和光负荷条件,始终存在促销高功率转换效率的趋势。为达到此目的,由于其在光负荷条件下的开关频率降低的自然特性,对DC-DC转换器的基于纹波的恒定时间(RBCOT)控制已经接受了广泛的关注。然而,RBCOT转换器遭受输出电压偏移问题和子谐波不稳定性问题。在本文中,将提出修改的RBCOT降压转换器电路以解决使用虚拟电感电流的概念来解决两种问题,以稳定反馈和偏移消除电路以消除输出DC偏移。还为改进的转换器开发了基于描述功能的控制模型。从模型中,找到了与传统的恒定频率控制器相比,使用所提出的修改的RBCOT方案来实现自适应电压定位(AVP)更容易。还提供了仿真和实验结果来验证所提出的方案。

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