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Driver Deadtime Control and Its Impact on System Stability of Synchronous Buck Voltage Regulator

机译:驱动器死区时间控制及其对同步降压稳压器系统稳定性的影响

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摘要

Driver dead-time control is a popular scheme used to prevent the occurrence of the shoot-through issue in a synchronous Buck voltage regulator. As the switching frequency is continually increasing in today''s converter design, the deadtime interval is now long enough relative to the switching period to impact the system performance. In addition to its impact on efficiency, driver dead-time also impacts loop gain and system stability, especially under the critical load condition. In this paper, the influence of driver dead time on the synchronous buck converter is investigated in detail. With voltage mode control, the system loop gain will change under different load conditions due to the deadtime impact. The deadtime may cause sub-harmonic current ripple in the voltage regulator with sample-and-hold current mode control, while its impact on the peak current mode control can be ignored. Design equations are provided to avoid this issue. Some analysis data are included and compared to experimental results.
机译:驱动器死区时间控制是一种流行的方案,用于防止同步降压稳压器中发生直通问题。随着当今转换器设计中开关频率的不断提高,相对于开关周期,空载时间间隔现在足够长,从而影响系统性能。除了影响效率外,驱动器停滞时间还会影响环路增益和系统稳定性,尤其是在关键负载条件下。本文详细研究了驱动器死区时间对同步降压转换器的影响。使用电压模式控制时,由于死区时间的影响,系统环路增益将在不同的负载条件下发生变化。死区时间可能会在采用采样保持电流模式控制的稳压器中引起次谐波电流纹波,而其对峰值电流模式控制的影响可以忽略。提供设计公式来避免此问题。包括一些分析数据并将其与实验结果进行比较。

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