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Module-level DC/DC conversion for photovoltaic systems

机译:光伏系统的模块级DC / DC转换

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Photovoltaic (PV) systems are increasingly used to generate electrical energy from solar irradiance incident on PV modules. Each PV module is formed by placing a large amount of PV cells, typically 60, in series. The PV system is then formed by placing a number, typically 10–12, of PV modules in series in a string and sometimes by placing multiple strings of series-connected PV modules in parallel, depending on the desired output voltage and power range. In practical cases, differences will exist between output powers of the cells in the various PV modules, e.g. due to (part of) the modules being temporarily shaded, pollution on one or more PV cells, or even spread in cell behaviour. Due to the current-source-type behaviour of PV cells and their series connection these differences will lead to a relatively large drop in PV-system output power. This paper addresses this problem by adding DC/DC converters on PV-module level. The concept, named ‘delta conversion’, aims at averaging out differences in output power between groups of PV cells within modules and between modules inside the PV system. As a result, all these groups of PV cells can output their maximum available power, such that a drop in output power of the total system is prevented. This paper compares the delta-conversion concept with other state-of-the-art module-level power-conversion concepts and presents first measurement results obtained with a demonstrator system.
机译:光伏(PV)系统越来越多地用于通过入射在PV模块上的太阳辐射来产生电能。通过串联放置大量的PV电池(通常为60个)来形成每个PV模块。然后,根据所需的输出电压和功率范围,通过将一串串联的多个PV模块(通常为10–12个)串联成一串,有时有时将多串串联的PV模块并联成一串,从而形成PV系统。在实际情况下,各种PV模块中电池的输出功率之间会存在差异,例如由于模块的(部分)暂时被遮蔽,一个或多个PV电池受到污染,甚至在电池行为中扩散。由于PV电池的电流源类型行为及其串联连接,这些差异将导致PV系统输出功率的下降幅度较大。本文通过在PV模块级别上添加DC / DC转换器来解决此问题。这个名为“增量转换”的概念旨在平均化模块内各组PV电池之间以及光伏系统内各模块之间的输出功率差异。结果,所有这些组的PV电池可输出其最大可用功率,从而防止整个系统的输出功率下降。本文将增量转换概念与其他最新的模块级功率转换概念进行了比较,并展示了演示器系统获得的首次测量结果。

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