首页> 外文会议>Applied Power Electronics Conference and Exposition (APEC), 2012 Twenty-Seventh Annual IEEE >A switching pattern for single-phase single-stage current source boost inverter
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A switching pattern for single-phase single-stage current source boost inverter

机译:单相单级电流源升压逆变器的开关模式

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The dc voltage of sustainable energy (SE) sources, such as photovoltaic panels and fuel-cells, are typically boosted and then converted to an ac voltage in a two-stage process. This common topology requires a large electrolytic capacitor, which might reduce the lifetime of the overall system. From the system reliability and efficiency point of view, it is desired to eliminate the use of large electrolytic capacitors, and integrate the boosting and inverting processes into a single-stage converter. In this paper, a switching pattern for a single-phase single-stage dc-ac converter, here called current source boost inverter (CSBI), is formulated for grid-tied applications. The aforementioned desirable features are all integrated into the presented CSBI to enhance the overall system reliability and efficiency. Moreover, in the proposed switching pattern, only one switch is modulated at any period of time to improve the efficiency of CSBI. The developed switching pattern for the grid-tied CSBI is experimentally verified through a single-phase micro-CSBI and the results are presented in this paper.
机译:可持续能源(SE)源(例如光伏面板和燃料电池)的直流电压通常会升高,然后在两步过程中转换为交流电压。这种常见的拓扑结构需要一个大的电解电容器,这可能会缩短整个系统的寿命。从系统可靠性和效率的角度来看,希望消除大型电解电容器的使用,并将升压和逆变过程集成到单级转换器中。在本文中,针对并网应用制定了单相单级dc-ac转换器的开关模式,此处称为电流源升压逆变器(CSBI)。前述期望的特征全部集成到提出的CSBI中,以增强整体系统的可靠性和效率。此外,在提出的开关模式中,在任何时间段仅调制一个开关以提高CSBI的效率。通过单相微型CSBI对已开发的并网CSBI的开关模式进行了实验验证,并在本文中给出了结果。

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