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Cascaded DC-DC converter connection of photovoltaic modules

机译:光伏模块的级联DC-DC转换器连接

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New residential scale PhotoVoltaic (PV) arrays are commonly connected to the grid by a single DC-AC inverter connected to a series string of PV modules, or many small DC-AC inverters which connect one or two modules directly to the AC grid. This paper shows that a "converter- per-module" approach offers many advantages including individual module Maximum Power Point Tracking, which gives great flexibility in module layout, replacement, and insensitivity to shading; better protection of PV sources, and redundancy in the case of source or converter failure; easier and safer installation and maintenance; and better data gathering. Simple non-isolated per-module DC-DC converters can be series connected to create a high voltage string connected to a simplified DC-AC inverter. These advantages are available without the cost or efficiency penalties of individual DC-AC grid connected inverters. Buck, boost, buck-boost and Cuk converters are possible cascadable converters. The boost converter is best if a significant step up is required, such as with a short string of 12 PV modules. A string of buck converters requires many more modules, but can always deliver any combination of module power. The buck converter will be the most efficient topology for a given cost. While flexible in voltage ranges, buck-boost and Cuk converters are always at an efficiency or alternatively cost disadvantage.
机译:新的住宅尺度光伏(PV)阵列通常通过连接到PV模块系列串的单个DC-AC逆变器,或许多小型DC-AC逆变器直接连接到AC电网的单个DC-AC逆变器。本文表明,“转换器”方法提供了许多优点,包括单个模块最大功率点跟踪,这在模块布局,更换和对遮光中的不敏感中提供了极大的灵活性;更好地保护PV来源,以及源或转换器故障的情况下的冗余;更轻松,安装和维护更安全;更好的数据收集。简单的非隔离式每模块DC-DC转换器可以串联连接,以创建连接到简化的DC-AC变频器的高压串。这些优点在没有各个DC-AC电网连接逆变器的成本或效率惩罚的情况下提供。降压,升压,降压 - 升压和CUK转换器是可均可转换器。如果需要大量升压,升压转换器是最佳的,例如具有12个PV模块的短串。一串降压转换器需要更多的模块,但始终可以提供模块电源的任何组合。降压转换器将是给定成本的最有效的拓扑。虽然柔性电压范围,降压 - 升压和CUK转换器始终处于效率或成本劣势。

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