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A multicarrier modular photovoltaic grid-connected inverter with a new phase-shift rule

机译:具有新相移规则的多载波模块化光伏并网逆变器

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Photovoltaic grid-connected inverters are distributed power generation devices that convert the dc power from solar panels to high-quality ac power at the utility grid interface. Adopting modular design in these systems improves expandability, serviceability, reliability and efficiency. In this paper, the phase-shifted carrier technique, which is normally used in high-power multiconverter schemes, is applied to a modular residential photovoltaic grid-connected inverter to improve the output power quality. First, it is shown, through analysis and simulation, that in the commonly-used grid-connected inverter topology based on the phase-shift modulated full-bridge converter, the well-known rule for the phase-shift between the carrier signals of the adjacent modules is not effective for both odd and even number of modules. Then, a new general rule for the phase-shift is systematically derived and its effectiveness in improving the output power quality for odd and even numbers of modules is verified through simulation.
机译:光伏并网逆变器是分布式发电设备,可将来自太阳能电池板的直流电转换为公用电网接口处的高质量交流电。在这些系统中采用模块化设计可提高可扩展性,可维护性,可靠性和效率。本文将通常用于大功率多转换器方案的相移载波技术应用于模块化住宅光伏并网逆变器,以提高输出功率质量。首先,通过分析和仿真显示,在基于相移调制全桥转换器的常用并网逆变器拓扑中,众所周知的关于载波信号之间的相移的规则。相邻模块对奇数和偶数个模块均无效。然后,系统地推导出了新的相移通用规则,并通过仿真验证了其在提高奇数和偶数模块的输出功率质量方面的有效性。

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