非对称连续电流传导模式下的四通道Buck变换器

IF 1.7 Q2 Engineering
Lilla Litvani, J. Hamar
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引用次数: 0

摘要

研究了四通道dc/dc降压变换器在连续电流传导模式下的不对称控制策略。转换器有两个输入通道和四个输出通道。研究了变换器的能量方程,并对CCM中输入电压、输出电压和负载的不对称性进行了检验。所提出的控制策略允许我们直接控制每个通道中的功率流,而不会在这些条件下对其余通道产生任何不必要的后果。其主要优点是通过电容电压的正序直接控制总传输功率,通过电容电压的负序控制输入通道之间的功率交换,通过电感电流控制输出通道之间的功率交换。计算这些电流还有助于确定变换器在某一点上是在CCM中工作还是在边界模式中工作(在边界模式中可以实现零电流切换)。该方法简化了零电压开关的可行性。在非对称输出电压下,变换器效率可达83%。理论研究得到了100瓦样机数值模拟和室内实验的验证。所研究的变换器可用于多电平逆变器的供电。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Four-Channel Buck Converter in Asymmetrical Continuous Current Conduction Mode
This article is concerned with the asymmetrical control strategies of a four-channel dc/dc buck converter in the continuous current conduction mode (CCM). The converter has two input and four output channels. Energy equations of the converter are studied, and asymmetry of input voltages, output voltages, and loads are examined in the CCM. The proposed control strategy allows us to directly control the power flow in each channel without any unwanted consequences for the rest of the channels among these conditions. The main advantage is the direct control of the total transferred power by the positive sequence of the capacitor voltage, the power exchange among the input channels by the negative sequence of the capacitor voltage, and the power exchange among the output channels by the inductor currents. Calculating these currents also helps to determine whether the converter at a certain point operates in the CCM or in the boundary mode (where zero current switching is possible). Feasibility of zero-voltage switching is simplified by this method. Converter efficiency is showed to be 83% at asymmetrical output voltages in the CCM. Theoretical studies are confirmed by both numerical simulations and laboratory experiments on a 100-W prototype. The studied converter can be applied in supplying multilevel inverters.
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来源期刊
自引率
0.00%
发文量
27
期刊介绍: The Canadian Journal of Electrical and Computer Engineering (ISSN-0840-8688), issued quarterly, has been publishing high-quality refereed scientific papers in all areas of electrical and computer engineering since 1976
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