Analysis of a voltage clamp quasi-resonant DC-link used in high frequency DC-AC converters

C. Sánchez, F. Ibáñez, F. Gonzalez
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引用次数: 5

Abstract

To increase power density in power converters we can increase the switching frequency as this enables the use of smaller capacitors and inductors. However, this technique has the disadvantage of increasing power loss in the switches. We can solve this problem by using a quasi-resonant circuit in the inverter DC link (RDCL). This circuit reduces its output voltage when the inverter switches switch. This is therefore performed at zero voltage and the switching power losses are zero. RDCL is used before a DC/AC converter, and so its behaviour must be characterised for reference in the control design. This characterisation is also used for adopting the RDCL output impedance and the inverter input in order to improve the system dynamic response. In this work, we present the results of the behavioural analysis of a resonant DC-link structure. It is based on the structure described in [S.Y.R. Hui et el., January 1996]. The resonance frequency was increased to 1.5 MHz and this enabled the use of RDCL in combination with inverters switching at 200 kHz. As a result the magnetic component requirement was strict. Different simulations were made and a 1 kW prototype was built to monitor the behaviour under different conditions.
用于高频DC-AC变换器的电压钳准谐振DC-link分析
为了提高功率变换器的功率密度,我们可以提高开关频率,因为这样可以使用更小的电容器和电感。然而,这种技术的缺点是增加了开关的功率损耗。我们可以通过在逆变器直流链路(RDCL)中使用准谐振电路来解决这个问题。该电路在逆变器切换开关时降低其输出电压。因此,这是在零电压下进行的,开关功率损耗为零。在DC/AC变换器之前使用RDCL,因此必须对其行为进行表征以供控制设计参考。该特性还用于采用RDCL输出阻抗和逆变器输入,以改善系统的动态响应。在这项工作中,我们提出了谐振直流链路结构的行为分析结果。它基于[S.Y.R.]中描述的结构惠等人。, 1996年1月]。谐振频率增加到1.5 MHz,这使得RDCL与逆变器在200 kHz开关的组合使用成为可能。因此,磁性元件的要求是严格的。进行了不同的模拟,并建立了一个1千瓦的原型机来监测不同条件下的行为。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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