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A High Power Density Multilevel Bipolar Active Single-Phase Buffer With Full Capacitor Energy Utilization and Controlled Power Harmonics

机译:具有全电容器能量利用和控制电力谐波的高功率密度多级双极性单相缓冲器

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摘要

Active power decoupling in single-phase conversion systems reduces the required capacitance for twice-line frequency power ripple buffering by operating the energy buffering capacitors with high energy utilization ratios. The bipolar active buffer is the buffer topology that can achieve 100% energy utilization ratio. Yet, the conventional two-level full-bridge designs suffer from high switching and conduction loss and large filter inductor size due to the direct connection of the buffer across the high voltage dc-bus. Moreover, the high voltage swings across the buffer capacitor impose challenges for the control to regulate harmonics in the system. This article improves the power density and the efficiency of the bipolar active buffer through a buffer architecture incorporating the flying capacitor multilevel topology. Moreover, control techniques to regulate harmonics in the buffer are proposed to maintain low ripple in the dc-side current. The use of two common types of capacitors, the metal film capacitor and the X6S multilayer ceramic capacitor (MLCC) as buffer capacitors, is addressed with different harmonic control schemes. With MLCCs, we have also achieved a total passive component volume that is almost three times smaller than state-of-the-art solutions. The proposed approach is validated using a compact hardware for a 2-kW, 400-V dc-bus, 60-Hz single-phase inverter application.
机译:通过操作具有高能量利用率的能量缓冲电容器,单相转换系统中的有效功率去耦减少了两次频率功率纹波缓冲所需的电容。双极活动缓冲液是可以实现100%能量利用率的缓冲拓扑。然而,传统的两级全桥梁设计由于缓冲器跨越高压DC总线而导致的高开关和导通损耗和大的滤波器电感尺寸。此外,缓冲电容器上的高压摇摆施加对控制的挑战来调节系统中的谐波。本文通过包含飞行电容器多级拓扑结构的缓冲架构来提高功率密度和双极活动缓冲器的效率。此外,提出了控制缓冲器中谐波的控制技术以在DC侧电流中保持低纹波。使用不同的谐波控制方案解决了两个常见类型的电容器,金属膜电容器和X6S多层陶瓷电容器(MLCC)作为缓冲电容。对于MLCC,我们还实现了总无源组件体积,这些体积几乎小于最先进的解决方案。使用紧凑的硬件进行验证,为2-KW,400 V直流总线,60-Hz单相逆变器应用程序进行验证。

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