同步和异步buck变换器在低输出电流下的效率。

Ismael Khaleel Murad
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引用次数: 3

摘要

本文将同步和异步buck变换器设计成工作在连续导通模式下的“CCM”,并提供小的负载电流。然后,通过使用不同的开关频率值(范围从150 KHz到1MHz)和三个分离的占空比值(0.4,0.6和0.8),测试了两种拓扑结构在小负载电流下的效率。得到的结果表明,同步和异步buck变换器“开关降压调节器”的效率都与开关频率的增加呈负相关。然而,这种影响在同步拓扑中更强,因为在小负载电流下工作时,与导通相关的损耗相比,与开关频率相关的损耗被放大了;这种特性使得这两种拓扑结构在输出小电流的情况下,特别是在高开关频率下工作时,都能获得收敛水平的效率。较大的占空比可以提高两种拓扑的效率。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Efficiency of Synchronous and Asynchronous Buck-Converter at Low Output Current.
In this paper both synchronous and asynchronous buck-converter were designed to work in continuous conduction mode “CCM” and to deliver small load current. Then the two topologies were tested in terms of efficiency at small load current by use of  different values of switching frequencies (range from 150 KHz to 1MHz) and three separated values of duty-cycle (0.4, 0.6 and 0.8).   Obtained results turns out that efficiency of both synchronous and asynchronous buck-converter “switching step-down voltage regulator” responds in a negative manner to the increase in the switching frequency. However, this impact is being stronger in synchronous topology because of magnifying effect of losses related to switching frequency compared to those related to conduction when working at small load currents; this behavior makes obtained efficiency of both topologies in convergent levels when they operated to deliver small output current especially when working with higher switching frequencies. Larger duty-cycle can rise up the efficiency of both topologies.
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